id	sid	tid	token	lemma	pos
cana-4853	1	1	communications	communication	NOUN
cana-4853	1	2	on	on	ADP
cana-4853	1	3	applied	apply	VERB
cana-4853	1	4	nonlinear	nonlinear	ADJ
cana-4853	1	5	analysis	analysis	NOUN
cana-4853	1	6	issn	issn	NOUN
cana-4853	1	7	:	:	PUNCT
cana-4853	1	8	1074	1074	NUM
cana-4853	1	9	-	-	PUNCT
cana-4853	1	10	133x	133x	NUM
cana-4853	1	11	vol	vol	VERB
cana-4853	1	12	32	32	NUM
cana-4853	1	13	no	no	NOUN
cana-4853	1	14	.	.	PUNCT
cana-4853	2	1	10s	10	NOUN
cana-4853	2	2	(	(	PUNCT
cana-4853	2	3	2025	2025	NUM
cana-4853	2	4	)	)	PUNCT
cana-4853	2	5	650	650	NUM
cana-4853	2	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	2	7	design	design	NOUN
cana-4853	2	8	and	and	CCONJ
cana-4853	2	9	optimization	optimization	NOUN
cana-4853	2	10	of	of	ADP
cana-4853	2	11	reversible	reversible	ADJ
cana-4853	2	12	quaternary	quaternary	ADJ
cana-4853	2	13	scalable	scalable	ADJ
cana-4853	2	14	multiplexers	multiplexer	NOUN
cana-4853	2	15	and	and	CCONJ
cana-4853	2	16	de	de	NOUN
cana-4853	2	17	-	-	NOUN
cana-4853	2	18	multiplexers	multiplexer	NOUN
cana-4853	2	19	dr	dr	PROPN
cana-4853	2	20	.	.	PROPN
cana-4853	2	21	m.	m.	PROPN
cana-4853	2	22	chennakesavulu1	chennakesavulu1	PROPN
cana-4853	2	23	,	,	PUNCT
cana-4853	2	24	p.	p.	PROPN
cana-4853	2	25	pujitha2	pujitha2	PROPN
cana-4853	2	26	,	,	PUNCT
cana-4853	2	27	k.	k.	PROPN
cana-4853	2	28	swarnalatha3	swarnalatha3	PROPN
cana-4853	2	29	,	,	PUNCT
cana-4853	2	30	s.	s.	PROPN
cana-4853	2	31	maisa4	maisa4	PROPN
cana-4853	2	32	,	,	PUNCT
cana-4853	2	33	p.	p.	NOUN
cana-4853	2	34	kalyan	kalyan	PROPN
cana-4853	3	1	kumar5	kumar5	NOUN
cana-4853	4	1	1associate	1associate	NUM
cana-4853	4	2	professor	professor	NOUN
cana-4853	4	3	,	,	PUNCT
cana-4853	4	4	department	department	PROPN
cana-4853	4	5	of	of	ADP
cana-4853	4	6	ece	ece	PROPN
cana-4853	4	7	,	,	PUNCT
cana-4853	4	8	rajeev	rajeev	PROPN
cana-4853	4	9	gandhi	gandhi	PROPN
cana-4853	4	10	memorial	memorial	PROPN
cana-4853	4	11	college	college	PROPN
cana-4853	4	12	of	of	ADP
cana-4853	4	13	engineering	engineering	NOUN
cana-4853	4	14	and	and	CCONJ
cana-4853	4	15	technology	technology	NOUN
cana-4853	4	16	,	,	PUNCT
cana-4853	4	17	nandyal	nandyal	PROPN
cana-4853	4	18	,	,	PUNCT
cana-4853	4	19	andhra	andhra	PROPN
cana-4853	4	20	pradesh	pradesh	PROPN
cana-4853	4	21	,	,	PUNCT
cana-4853	4	22	518501	518501	NUM
cana-4853	4	23	2,3,4,5	2,3,4,5	NUM
cana-4853	4	24	pursuing	pursue	VERB
cana-4853	4	25	bachelor	bachelor	NOUN
cana-4853	4	26	of	of	ADP
cana-4853	4	27	technology	technology	NOUN
cana-4853	4	28	,	,	PUNCT
cana-4853	4	29	department	department	PROPN
cana-4853	4	30	of	of	ADP
cana-4853	4	31	ece	ece	PROPN
cana-4853	4	32	,	,	PUNCT
cana-4853	4	33	rajeev	rajeev	PROPN
cana-4853	4	34	gandhi	gandhi	PROPN
cana-4853	4	35	memorial	memorial	PROPN
cana-4853	4	36	college	college	PROPN
cana-4853	4	37	of	of	ADP
cana-4853	4	38	engineering	engineering	NOUN
cana-4853	4	39	and	and	CCONJ
cana-4853	4	40	technology	technology	NOUN
cana-4853	4	41	,	,	PUNCT
cana-4853	4	42	nandyal	nandyal	PROPN
cana-4853	4	43	,	,	PUNCT
cana-4853	4	44	andhra	andhra	PROPN
cana-4853	4	45	pradesh	pradesh	PROPN
cana-4853	4	46	,	,	PUNCT
cana-4853	4	47	518501	518501	NUM
cana-4853	4	48	article	article	NOUN
cana-4853	4	49	history	history	NOUN
cana-4853	4	50	:	:	PUNCT
cana-4853	4	51	received	receive	VERB
cana-4853	4	52	:	:	PUNCT
cana-4853	4	53	12	12	NUM
cana-4853	4	54	-	-	SYM
cana-4853	4	55	01	01	NUM
cana-4853	4	56	-	-	PUNCT
cana-4853	4	57	2025	2025	NUM
cana-4853	4	58	revised	revise	VERB
cana-4853	4	59	:	:	PUNCT
cana-4853	4	60	15	15	NUM
cana-4853	4	61	-	-	NUM
cana-4853	4	62	02	02	NUM
cana-4853	4	63	-	-	PUNCT
cana-4853	4	64	2025	2025	NUM
cana-4853	4	65	accepted	accept	VERB
cana-4853	4	66	:	:	PUNCT
cana-4853	4	67	01	01	NUM
cana-4853	4	68	-	-	SYM
cana-4853	4	69	03	03	NUM
cana-4853	4	70	-	-	PUNCT
cana-4853	4	71	2025	2025	NUM
cana-4853	4	72	abstract	abstract	NOUN
cana-4853	4	73	:	:	PUNCT
cana-4853	4	74	minimizing	minimize	VERB
cana-4853	4	75	information	information	NOUN
cana-4853	4	76	loss	loss	NOUN
cana-4853	4	77	in	in	ADP
cana-4853	4	78	digital	digital	ADJ
cana-4853	4	79	systems	system	NOUN
cana-4853	4	80	is	be	AUX
cana-4853	4	81	important	important	ADJ
cana-4853	4	82	because	because	SCONJ
cana-4853	4	83	it	it	PRON
cana-4853	4	84	helps	help	VERB
cana-4853	4	85	in	in	ADP
cana-4853	4	86	saving	save	VERB
cana-4853	4	87	power	power	NOUN
cana-4853	4	88	.	.	PUNCT
cana-4853	5	1	quaternary	quaternary	ADJ
cana-4853	5	2	reversible	reversible	ADJ
cana-4853	5	3	circuits	circuit	NOUN
cana-4853	5	4	,	,	PUNCT
cana-4853	5	5	which	which	PRON
cana-4853	5	6	use	use	VERB
cana-4853	5	7	four	four	NUM
cana-4853	5	8	levels	level	NOUN
cana-4853	5	9	of	of	ADP
cana-4853	5	10	logic	logic	NOUN
cana-4853	5	11	instead	instead	ADV
cana-4853	5	12	of	of	ADP
cana-4853	5	13	the	the	DET
cana-4853	5	14	usual	usual	ADJ
cana-4853	5	15	two	two	NUM
cana-4853	5	16	,	,	PUNCT
cana-4853	5	17	are	be	AUX
cana-4853	5	18	becoming	become	VERB
cana-4853	5	19	popular	popular	ADJ
cana-4853	5	20	because	because	SCONJ
cana-4853	5	21	they	they	PRON
cana-4853	5	22	can	can	AUX
cana-4853	5	23	be	be	AUX
cana-4853	5	24	more	more	ADJ
cana-4853	5	25	energy	energy	NOUN
cana-4853	5	26	-	-	PUNCT
cana-4853	5	27	efficient	efficient	ADJ
cana-4853	5	28	.	.	PUNCT
cana-4853	6	1	this	this	DET
cana-4853	6	2	paper	paper	NOUN
cana-4853	6	3	introduces	introduce	VERB
cana-4853	6	4	a	a	DET
cana-4853	6	5	new	new	ADJ
cana-4853	6	6	and	and	CCONJ
cana-4853	6	7	scalable	scalable	ADJ
cana-4853	6	8	design	design	NOUN
cana-4853	6	9	for	for	ADP
cana-4853	6	10	key	key	ADJ
cana-4853	6	11	circuits	circuit	NOUN
cana-4853	6	12	in	in	ADP
cana-4853	6	13	computing	compute	VERB
cana-4853	6	14	,	,	PUNCT
cana-4853	6	15	specifically	specifically	ADV
cana-4853	6	16	4	4	NUM
cana-4853	6	17	×	×	NOUN
cana-4853	6	18	1	1	NUM
cana-4853	6	19	multiplexers	multiplexer	NOUN
cana-4853	6	20	and	and	CCONJ
cana-4853	6	21	1	1	NUM
cana-4853	6	22	×	×	NOUN
cana-4853	6	23	4	4	NUM
cana-4853	6	24	demultiplexers	demultiplexer	NOUN
cana-4853	6	25	,	,	PUNCT
cana-4853	6	26	and	and	CCONJ
cana-4853	6	27	also	also	ADV
cana-4853	6	28	n	n	CCONJ
cana-4853	6	29	x	x	SYM
cana-4853	6	30	1	1	NUM
cana-4853	6	31	multiplexers	multiplexer	NOUN
cana-4853	6	32	and	and	CCONJ
cana-4853	6	33	1	1	NUM
cana-4853	6	34	x	x	SYM
cana-4853	6	35	n	n	PRON
cana-4853	6	36	demultiplexers	demultiplexer	NOUN
cana-4853	6	37	using	use	VERB
cana-4853	6	38	special	special	ADJ
cana-4853	6	39	gates	gate	NOUN
cana-4853	6	40	designed	design	VERB
cana-4853	6	41	for	for	ADP
cana-4853	6	42	quaternary	quaternary	ADJ
cana-4853	6	43	logic	logic	NOUN
cana-4853	6	44	.	.	PUNCT
cana-4853	7	1	this	this	DET
cana-4853	7	2	paper	paper	NOUN
cana-4853	7	3	proposes	propose	VERB
cana-4853	7	4	,	,	PUNCT
cana-4853	7	5	a	a	DET
cana-4853	7	6	general	general	ADJ
cana-4853	7	7	method	method	NOUN
cana-4853	7	8	for	for	ADP
cana-4853	7	9	building	build	VERB
cana-4853	7	10	larger	large	ADJ
cana-4853	7	11	versions	version	NOUN
cana-4853	7	12	of	of	ADP
cana-4853	7	13	these	these	DET
cana-4853	7	14	circuits	circuit	NOUN
cana-4853	7	15	.	.	PUNCT
cana-4853	8	1	compared	compare	VERB
cana-4853	8	2	to	to	ADP
cana-4853	8	3	existing	exist	VERB
cana-4853	8	4	designs	design	NOUN
cana-4853	8	5	,	,	PUNCT
cana-4853	8	6	proposed	propose	VERB
cana-4853	8	7	circuits	circuit	NOUN
cana-4853	8	8	will	will	AUX
cana-4853	8	9	be	be	AUX
cana-4853	8	10	more	more	ADV
cana-4853	8	11	efficient	efficient	ADJ
cana-4853	8	12	because	because	SCONJ
cana-4853	8	13	they	they	PRON
cana-4853	8	14	use	use	VERB
cana-4853	8	15	fewer	few	ADJ
cana-4853	8	16	resources	resource	NOUN
cana-4853	8	17	and	and	CCONJ
cana-4853	8	18	produce	produce	VERB
cana-4853	8	19	less	less	ADJ
cana-4853	8	20	waste	waste	NOUN
cana-4853	8	21	,	,	PUNCT
cana-4853	8	22	which	which	PRON
cana-4853	8	23	will	will	AUX
cana-4853	8	24	improve	improve	VERB
cana-4853	8	25	the	the	DET
cana-4853	8	26	performance	performance	NOUN
cana-4853	8	27	of	of	ADP
cana-4853	8	28	processors	processor	NOUN
cana-4853	8	29	in	in	ADP
cana-4853	8	30	digital	digital	ADJ
cana-4853	8	31	systems	system	NOUN
cana-4853	8	32	.	.	PUNCT
cana-4853	9	1	in	in	ADP
cana-4853	9	2	circuit	circuit	NOUN
cana-4853	9	3	analysis	analysis	NOUN
cana-4853	9	4	,	,	PUNCT
cana-4853	9	5	multiplexers	multiplexer	NOUN
cana-4853	9	6	and	and	CCONJ
cana-4853	9	7	demultiplexers	demultiplexer	NOUN
cana-4853	9	8	are	be	AUX
cana-4853	9	9	essential	essential	ADJ
cana-4853	9	10	components	component	NOUN
cana-4853	9	11	of	of	ADP
cana-4853	9	12	the	the	DET
cana-4853	9	13	arithmetic	arithmetic	ADJ
cana-4853	9	14	logic	logic	NOUN
cana-4853	9	15	unit	unit	NOUN
cana-4853	9	16	(	(	PUNCT
cana-4853	9	17	alu	alu	NOUN
cana-4853	9	18	)	)	PUNCT
cana-4853	9	19	.	.	PUNCT
cana-4853	10	1	the	the	DET
cana-4853	10	2	performance	performance	NOUN
cana-4853	10	3	of	of	ADP
cana-4853	10	4	the	the	DET
cana-4853	10	5	processor	processor	NOUN
cana-4853	10	6	is	be	AUX
cana-4853	10	7	greatly	greatly	ADV
cana-4853	10	8	impacted	impact	VERB
cana-4853	10	9	by	by	ADP
cana-4853	10	10	their	their	PRON
cana-4853	10	11	effective	effective	ADJ
cana-4853	10	12	design	design	NOUN
cana-4853	10	13	.	.	PUNCT
cana-4853	11	1	this	this	DET
cana-4853	11	2	work	work	NOUN
cana-4853	11	3	realized	realize	VERB
cana-4853	11	4	by	by	ADP
cana-4853	11	5	using	use	VERB
cana-4853	11	6	eda	eda	PROPN
cana-4853	11	7	tools	tool	NOUN
cana-4853	11	8	and	and	CCONJ
cana-4853	11	9	performance	performance	NOUN
cana-4853	11	10	of	of	ADP
cana-4853	11	11	proposed	propose	VERB
cana-4853	11	12	techniques	technique	NOUN
cana-4853	11	13	is	be	AUX
cana-4853	11	14	analyzed	analyze	VERB
cana-4853	11	15	in	in	ADP
cana-4853	11	16	terms	term	NOUN
cana-4853	11	17	of	of	ADP
cana-4853	11	18	quantitative	quantitative	ADJ
cana-4853	11	19	outcomes	outcome	NOUN
cana-4853	11	20	and	and	CCONJ
cana-4853	11	21	calculating	calculate	VERB
cana-4853	11	22	power	power	NOUN
cana-4853	11	23	,	,	PUNCT
cana-4853	11	24	delay	delay	NOUN
cana-4853	11	25	and	and	CCONJ
cana-4853	11	26	power	power	NOUN
cana-4853	11	27	delay	delay	NOUN
cana-4853	11	28	product	product	NOUN
cana-4853	11	29	(	(	PUNCT
cana-4853	11	30	pdp	pdp	PROPN
cana-4853	11	31	)	)	PUNCT
cana-4853	11	32	in	in	ADP
cana-4853	11	33	nano	nano	NOUN
cana-4853	11	34	meter	meter	NOUN
cana-4853	11	35	technology	technology	NOUN
cana-4853	11	36	.	.	PUNCT
cana-4853	12	1	keywords	keyword	NOUN
cana-4853	12	2	:	:	PUNCT
cana-4853	12	3	reversible	reversible	ADJ
cana-4853	12	4	quaternary	quaternary	ADJ
cana-4853	12	5	logic	logic	NOUN
cana-4853	12	6	circuits	circuit	NOUN
cana-4853	12	7	,	,	PUNCT
cana-4853	12	8	multiplexers	multiplexer	NOUN
cana-4853	12	9	,	,	PUNCT
cana-4853	12	10	demultiplexers	demultiplexer	NOUN
cana-4853	12	11	and	and	CCONJ
cana-4853	12	12	nano	nano	NOUN
cana-4853	12	13	meter	meter	NOUN
cana-4853	12	14	technology	technology	NOUN
cana-4853	12	15	1	1	NUM
cana-4853	12	16	.	.	PUNCT
cana-4853	12	17	introduction	introduction	NOUN
cana-4853	12	18	the	the	DET
cana-4853	12	19	limits	limit	NOUN
cana-4853	12	20	future	future	ADJ
cana-4853	12	21	circuit	circuit	NOUN
cana-4853	12	22	design	design	NOUN
cana-4853	12	23	to	to	ADP
cana-4853	12	24	high	high	ADJ
cana-4853	12	25	power	power	NOUN
cana-4853	12	26	consumption	consumption	NOUN
cana-4853	12	27	.	.	PUNCT
cana-4853	13	1	as	as	ADV
cana-4853	13	2	early	early	ADV
cana-4853	13	3	as	as	ADP
cana-4853	13	4	in	in	ADP
cana-4853	13	5	1961	1961	NUM
cana-4853	13	6	,	,	PUNCT
cana-4853	13	7	in	in	ADP
cana-4853	13	8	circuit	circuit	NOUN
cana-4853	13	9	design	design	NOUN
cana-4853	13	10	,	,	PUNCT
cana-4853	13	11	landauer	landauer	NOUN
cana-4853	13	12	showed	show	VERB
cana-4853	13	13	that	that	SCONJ
cana-4853	13	14	irreversible	irreversible	ADJ
cana-4853	13	15	gates	gate	NOUN
cana-4853	13	16	cause	cause	VERB
cana-4853	13	17	energy	energy	NOUN
cana-4853	13	18	loss	loss	NOUN
cana-4853	13	19	[	[	X
cana-4853	13	20	1	1	NUM
cana-4853	13	21	]	]	PUNCT
cana-4853	13	22	.	.	PUNCT
cana-4853	14	1	zhirnov	zhirnov	PROPN
cana-4853	14	2	et	et	PROPN
cana-4853	14	3	al	al	PROPN
cana-4853	14	4	.	.	PROPN
cana-4853	14	5	pointed	point	VERB
cana-4853	14	6	out	out	ADP
cana-4853	14	7	that	that	SCONJ
cana-4853	14	8	cmos	cmos	PROPN
cana-4853	14	9	technology	technology	NOUN
cana-4853	14	10	wo	will	AUX
cana-4853	14	11	n't	not	PART
cana-4853	14	12	be	be	AUX
cana-4853	14	13	efficiently	efficiently	ADV
cana-4853	14	14	cooled	cool	VERB
cana-4853	14	15	because	because	SCONJ
cana-4853	14	16	of	of	ADP
cana-4853	14	17	power	power	NOUN
cana-4853	14	18	dissipation	dissipation	NOUN
cana-4853	14	19	[	[	X
cana-4853	14	20	2	2	NUM
cana-4853	14	21	]	]	PUNCT
cana-4853	14	22	.	.	PUNCT
cana-4853	15	1	bennett	bennett	PROPN
cana-4853	15	2	's	's	PART
cana-4853	15	3	work	work	NOUN
cana-4853	15	4	shown	show	VERB
cana-4853	15	5	that	that	SCONJ
cana-4853	15	6	using	use	VERB
cana-4853	15	7	reversible	reversible	ADJ
cana-4853	15	8	gates	gate	NOUN
cana-4853	15	9	in	in	ADP
cana-4853	15	10	circuit	circuit	NOUN
cana-4853	15	11	design	design	NOUN
cana-4853	15	12	does	do	AUX
cana-4853	15	13	not	not	PART
cana-4853	15	14	result	result	VERB
cana-4853	15	15	in	in	ADP
cana-4853	15	16	power	power	NOUN
cana-4853	15	17	dissipation	dissipation	NOUN
cana-4853	15	18	[	[	X
cana-4853	15	19	3	3	NUM
cana-4853	15	20	]	]	PUNCT
cana-4853	15	21	.	.	PUNCT
cana-4853	16	1	input	input	NOUN
cana-4853	16	2	vectors	vector	NOUN
cana-4853	16	3	can	can	AUX
cana-4853	16	4	be	be	AUX
cana-4853	16	5	obtained	obtain	VERB
cana-4853	16	6	from	from	ADP
cana-4853	16	7	the	the	DET
cana-4853	16	8	vectors	vector	NOUN
cana-4853	16	9	that	that	PRON
cana-4853	16	10	are	be	AUX
cana-4853	16	11	generated	generate	VERB
cana-4853	16	12	and	and	CCONJ
cana-4853	16	13	vice	vice	ADV
cana-4853	16	14	versa	versa	ADV
cana-4853	16	15	since	since	SCONJ
cana-4853	16	16	reversible	reversible	ADJ
cana-4853	16	17	gates	gate	NOUN
cana-4853	16	18	have	have	VERB
cana-4853	16	19	an	an	DET
cana-4853	16	20	equal	equal	ADJ
cana-4853	16	21	number	number	NOUN
cana-4853	16	22	of	of	ADP
cana-4853	16	23	inputs	input	NOUN
cana-4853	16	24	and	and	CCONJ
cana-4853	16	25	outputs	output	NOUN
cana-4853	16	26	[	[	X
cana-4853	16	27	4	4	NUM
cana-4853	16	28	,	,	PUNCT
cana-4853	16	29	5	5	NUM
cana-4853	16	30	,	,	PUNCT
cana-4853	16	31	6	6	NUM
cana-4853	16	32	]	]	PUNCT
cana-4853	16	33	.	.	PUNCT
cana-4853	17	1	fan	fan	NOUN
cana-4853	17	2	-	-	PUNCT
cana-4853	17	3	out	out	NOUN
cana-4853	17	4	and	and	CCONJ
cana-4853	17	5	feedback	feedback	NOUN
cana-4853	17	6	must	must	AUX
cana-4853	17	7	also	also	ADV
cana-4853	17	8	be	be	AUX
cana-4853	17	9	excluded	exclude	VERB
cana-4853	17	10	from	from	ADP
cana-4853	17	11	these	these	DET
cana-4853	17	12	circuits	circuit	NOUN
cana-4853	17	13	[	[	X
cana-4853	17	14	6	6	NUM
cana-4853	17	15	]	]	PUNCT
cana-4853	17	16	.	.	PUNCT
cana-4853	18	1	reversible	reversible	ADJ
cana-4853	18	2	circuits	circuit	NOUN
cana-4853	18	3	are	be	AUX
cana-4853	18	4	regarded	regard	VERB
cana-4853	18	5	as	as	ADP
cana-4853	18	6	a	a	DET
cana-4853	18	7	major	major	ADJ
cana-4853	18	8	facilitator	facilitator	NOUN
cana-4853	18	9	for	for	ADP
cana-4853	18	10	the	the	DET
cana-4853	18	11	development	development	NOUN
cana-4853	18	12	of	of	ADP
cana-4853	18	13	quantum	quantum	NOUN
cana-4853	18	14	computing	computing	NOUN
cana-4853	18	15	technology	technology	NOUN
cana-4853	18	16	because	because	SCONJ
cana-4853	18	17	of	of	ADP
cana-4853	18	18	their	their	PRON
cana-4853	18	19	intrinsic	intrinsic	ADJ
cana-4853	18	20	reversibility	reversibility	NOUN
cana-4853	18	21	[	[	X
cana-4853	18	22	7	7	NUM
cana-4853	18	23	]	]	PUNCT
cana-4853	18	24	,	,	PUNCT
cana-4853	18	25	[	[	X
cana-4853	18	26	8	8	NUM
cana-4853	18	27	]	]	PUNCT
cana-4853	18	28	.	.	PUNCT
cana-4853	19	1	compared	compare	VERB
cana-4853	19	2	to	to	ADP
cana-4853	19	3	classical	classical	ADJ
cana-4853	19	4	computing	computing	NOUN
cana-4853	19	5	,	,	PUNCT
cana-4853	19	6	quantum	quantum	NOUN
cana-4853	19	7	computing	computing	NOUN
cana-4853	19	8	has	have	VERB
cana-4853	19	9	the	the	DET
cana-4853	19	10	ability	ability	NOUN
cana-4853	19	11	to	to	PART
cana-4853	19	12	greatly	greatly	ADV
cana-4853	19	13	decrease	decrease	VERB
cana-4853	19	14	computational	computational	ADJ
cana-4853	19	15	complexity	complexity	NOUN
cana-4853	19	16	and	and	CCONJ
cana-4853	19	17	perform	perform	VERB
cana-4853	19	18	more	more	ADV
cana-4853	19	19	efficiently	efficiently	ADV
cana-4853	19	20	.	.	PUNCT
cana-4853	20	1	for	for	ADP
cana-4853	20	2	example	example	NOUN
cana-4853	20	3	,	,	PUNCT
cana-4853	20	4	a	a	DET
cana-4853	20	5	search	search	NOUN
cana-4853	20	6	in	in	ADP
cana-4853	20	7	an	an	DET
cana-4853	20	8	unprocessed	unprocesse	VERB
cana-4853	20	9	database	database	NOUN
cana-4853	20	10	can	can	AUX
cana-4853	20	11	be	be	AUX
cana-4853	20	12	completed	complete	VERB
cana-4853	20	13	by	by	ADP
cana-4853	20	14	quantum	quantum	ADJ
cana-4853	20	15	algorithms	algorithm	NOUN
cana-4853	20	16	in	in	ADP
cana-4853	20	17	roughly	roughly	ADV
cana-4853	20	18	√(n	√(n	NUM
cana-4853	20	19	)	)	PUNCT
cana-4853	20	20	steps	step	NOUN
cana-4853	20	21	,	,	PUNCT
cana-4853	20	22	while	while	SCONJ
cana-4853	20	23	classical	classical	ADJ
cana-4853	20	24	algorithms	algorithm	NOUN
cana-4853	20	25	need	need	VERB
cana-4853	20	26	n	n	PRON
cana-4853	20	27	steps	step	NOUN
cana-4853	20	28	to	to	PART
cana-4853	20	29	accomplish	accomplish	VERB
cana-4853	20	30	the	the	DET
cana-4853	20	31	same	same	ADJ
cana-4853	20	32	task	task	NOUN
cana-4853	21	1	[	[	X
cana-4853	21	2	9	9	NUM
cana-4853	21	3	]	]	PUNCT
cana-4853	21	4	,	,	PUNCT
cana-4853	21	5	[	[	X
cana-4853	21	6	10	10	NUM
cana-4853	21	7	]	]	PUNCT
cana-4853	21	8	.	.	PUNCT
cana-4853	22	1	since	since	SCONJ
cana-4853	22	2	binary	binary	ADJ
cana-4853	22	3	logic	logic	NOUN
cana-4853	22	4	is	be	AUX
cana-4853	22	5	predicted	predict	VERB
cana-4853	22	6	to	to	PART
cana-4853	22	7	encounter	encounter	VERB
cana-4853	22	8	major	major	ADJ
cana-4853	22	9	difficulties	difficulty	NOUN
cana-4853	22	10	because	because	SCONJ
cana-4853	22	11	of	of	ADP
cana-4853	22	12	serious	serious	ADJ
cana-4853	22	13	reliability	reliability	NOUN
cana-4853	22	14	and	and	CCONJ
cana-4853	22	15	thermal	thermal	ADJ
cana-4853	22	16	concerns	concern	NOUN
cana-4853	22	17	,	,	PUNCT
cana-4853	22	18	multiple	multiple	ADV
cana-4853	22	19	-	-	PUNCT
cana-4853	22	20	valued	value	VERB
cana-4853	22	21	logic	logic	NOUN
cana-4853	22	22	has	have	AUX
cana-4853	22	23	attracted	attract	VERB
cana-4853	22	24	a	a	DET
cana-4853	22	25	lot	lot	NOUN
cana-4853	22	26	of	of	ADP
cana-4853	22	27	interest	interest	NOUN
cana-4853	22	28	[	[	X
cana-4853	22	29	12	12	NUM
cana-4853	22	30	]	]	PUNCT
cana-4853	22	31	.	.	PUNCT
cana-4853	23	1	reversible	reversible	ADJ
cana-4853	23	2	multiple	multiple	ADV
cana-4853	23	3	-	-	PUNCT
cana-4853	23	4	valued	value	VERB
cana-4853	23	5	logic	logic	NOUN
cana-4853	23	6	is	be	AUX
cana-4853	23	7	more	more	ADV
cana-4853	23	8	efficient	efficient	ADJ
cana-4853	23	9	in	in	ADP
cana-4853	23	10	quantum	quantum	ADJ
cana-4853	23	11	processing	processing	NOUN
cana-4853	23	12	of	of	ADP
cana-4853	23	13	data	datum	NOUN
cana-4853	23	14	and	and	CCONJ
cana-4853	23	15	provides	provide	VERB
cana-4853	23	16	greater	great	ADJ
cana-4853	23	17	safety	safety	NOUN
cana-4853	23	18	in	in	ADP
cana-4853	23	19	quantum	quantum	ADJ
cana-4853	23	20	encryption	encryption	NOUN
cana-4853	23	21	[	[	X
cana-4853	23	22	14	14	NUM
cana-4853	23	23	]	]	PUNCT
cana-4853	23	24	as	as	ADP
cana-4853	23	25	compared	compare	VERB
cana-4853	23	26	with	with	ADP
cana-4853	23	27	reversible	reversible	ADJ
cana-4853	23	28	binary	binary	ADJ
cana-4853	23	29	logic	logic	NOUN
cana-4853	23	30	.	.	PUNCT
cana-4853	24	1	it	it	PRON
cana-4853	24	2	communications	communication	VERB
cana-4853	24	3	on	on	ADP
cana-4853	24	4	applied	apply	VERB
cana-4853	24	5	nonlinear	nonlinear	ADJ
cana-4853	24	6	analysis	analysis	NOUN
cana-4853	24	7	issn	issn	NOUN
cana-4853	24	8	:	:	PUNCT
cana-4853	24	9	1074	1074	NUM
cana-4853	24	10	-	-	PUNCT
cana-4853	24	11	133x	133x	NUM
cana-4853	24	12	vol	vol	VERB
cana-4853	24	13	32	32	NUM
cana-4853	24	14	no	no	NOUN
cana-4853	24	15	.	.	PUNCT
cana-4853	25	1	10s	10	NOUN
cana-4853	25	2	(	(	PUNCT
cana-4853	25	3	2025	2025	NUM
cana-4853	25	4	)	)	PUNCT
cana-4853	25	5	651	651	NUM
cana-4853	25	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	25	7	also	also	ADV
cana-4853	25	8	has	have	AUX
cana-4853	25	9	increased	increase	VERB
cana-4853	25	10	tolerance	tolerance	NOUN
cana-4853	25	11	for	for	ADP
cana-4853	25	12	errors	error	NOUN
cana-4853	25	13	in	in	ADP
cana-4853	25	14	quantum	quantum	ADJ
cana-4853	25	15	calculations	calculation	NOUN
cana-4853	25	16	and	and	CCONJ
cana-4853	25	17	lower	low	ADJ
cana-4853	25	18	connectivity	connectivity	NOUN
cana-4853	25	19	complexity	complexity	NOUN
cana-4853	25	20	as	as	ADV
cana-4853	25	21	well	well	ADV
cana-4853	25	22	as	as	ADP
cana-4853	25	23	lower	low	ADJ
cana-4853	25	24	power	power	NOUN
cana-4853	25	25	consumption	consumption	NOUN
cana-4853	25	26	.	.	PUNCT
cana-4853	26	1	ternary	ternary	ADJ
cana-4853	26	2	logic	logic	NOUN
cana-4853	26	3	is	be	AUX
cana-4853	26	4	one	one	NUM
cana-4853	26	5	of	of	ADP
cana-4853	26	6	the	the	DET
cana-4853	26	7	most	most	ADV
cana-4853	26	8	effective	effective	ADJ
cana-4853	26	9	types	type	NOUN
cana-4853	26	10	of	of	ADP
cana-4853	26	11	multiplevalued	multiplevalue	VERB
cana-4853	26	12	logic	logic	NOUN
cana-4853	26	13	among	among	ADP
cana-4853	26	14	the	the	DET
cana-4853	26	15	others	other	NOUN
cana-4853	26	16	operates	operate	VERB
cana-4853	26	17	in	in	ADP
cana-4853	26	18	this	this	DET
cana-4853	26	19	domain	domain	NOUN
cana-4853	26	20	.	.	PUNCT
cana-4853	27	1	a	a	DET
cana-4853	27	2	disadvantage	disadvantage	NOUN
cana-4853	27	3	is	be	AUX
cana-4853	27	4	that	that	SCONJ
cana-4853	27	5	standard	standard	ADJ
cana-4853	27	6	binary	binary	ADJ
cana-4853	27	7	logic	logic	NOUN
cana-4853	27	8	circuits	circuit	NOUN
cana-4853	27	9	can	can	AUX
cana-4853	27	10	be	be	AUX
cana-4853	27	11	a	a	DET
cana-4853	27	12	very	very	ADV
cana-4853	27	13	difficult	difficult	ADJ
cana-4853	27	14	to	to	PART
cana-4853	27	15	symbolized	symbolize	VERB
cana-4853	27	16	in	in	ADP
cana-4853	27	17	ternary	ternary	ADJ
cana-4853	27	18	logic	logic	NOUN
cana-4853	27	19	.	.	PUNCT
cana-4853	28	1	two	two	NUM
cana-4853	28	2	bits	bit	NOUN
cana-4853	28	3	can	can	AUX
cana-4853	28	4	express	express	VERB
cana-4853	28	5	binary	binary	ADJ
cana-4853	28	6	logic	logic	NOUN
cana-4853	28	7	functions	function	NOUN
cana-4853	28	8	in	in	ADP
cana-4853	28	9	quaternary	quaternary	ADJ
cana-4853	28	10	logic	logic	NOUN
cana-4853	28	11	by	by	ADP
cana-4853	28	12	being	be	AUX
cana-4853	28	13	a	a	DET
cana-4853	28	14	group	group	NOUN
cana-4853	28	15	of	of	ADP
cana-4853	28	16	quaternary	quaternary	ADJ
cana-4853	28	17	values	value	NOUN
cana-4853	28	18	.	.	PUNCT
cana-4853	29	1	quantum	quantum	ADJ
cana-4853	29	2	quaternary	quaternary	ADJ
cana-4853	29	3	logic	logic	NOUN
cana-4853	29	4	the	the	DET
cana-4853	29	5	memory	memory	NOUN
cana-4853	29	6	unit	unit	NOUN
cana-4853	29	7	uses	use	VERB
cana-4853	29	8	qudit	qudit	NOUN
cana-4853	29	9	,	,	PUNCT
cana-4853	29	10	which	which	PRON
cana-4853	29	11	can	can	AUX
cana-4853	29	12	be	be	AUX
cana-4853	29	13	appear	appear	VERB
cana-4853	29	14	in	in	ADP
cana-4853	29	15	the	the	DET
cana-4853	29	16	following	follow	VERB
cana-4853	29	17	categories	category	NOUN
cana-4853	29	18	:	:	PUNCT
cana-4853	29	19	|0⟩	|0⟩	PROPN
cana-4853	29	20	|1⟩	|1⟩	PROPN
cana-4853	29	21	,	,	PUNCT
cana-4853	29	22	|2⟩	|2⟩	NOUN
cana-4853	29	23	,	,	PUNCT
cana-4853	29	24	and	and	CCONJ
cana-4853	29	25	|3⟩.	|3⟩.	VERB
cana-4853	29	26	the	the	DET
cana-4853	29	27	4x1	4x1	NUM
cana-4853	29	28	vector	vector	NOUN
cana-4853	29	29	equation	equation	NOUN
cana-4853	29	30	is	be	AUX
cana-4853	29	31	used	use	VERB
cana-4853	29	32	to	to	PART
cana-4853	29	33	represent	represent	VERB
cana-4853	29	34	the	the	DET
cana-4853	29	35	corresponding	correspond	VERB
cana-4853	29	36	states	state	NOUN
cana-4853	29	37	(	(	PUNCT
cana-4853	29	38	1	1	NUM
cana-4853	29	39	)	)	PUNCT
cana-4853	29	40	.	.	PUNCT
cana-4853	30	1	key	key	ADJ
cana-4853	30	2	circuits	circuit	NOUN
cana-4853	30	3	such	such	ADJ
cana-4853	30	4	decoders	decoder	NOUN
cana-4853	30	5	,	,	PUNCT
cana-4853	30	6	half	half	ADJ
cana-4853	30	7	subtractors	subtractor	NOUN
cana-4853	30	8	,	,	PUNCT
cana-4853	30	9	full	full	ADJ
cana-4853	30	10	adders	adder	NOUN
cana-4853	30	11	,	,	PUNCT
cana-4853	30	12	parallel	parallel	ADJ
cana-4853	30	13	adders	adder	NOUN
cana-4853	30	14	,	,	PUNCT
cana-4853	30	15	and	and	CCONJ
cana-4853	30	16	comparators	comparator	NOUN
cana-4853	30	17	have	have	AUX
cana-4853	30	18	been	be	AUX
cana-4853	30	19	developed	develop	VERB
cana-4853	30	20	as	as	ADP
cana-4853	30	21	a	a	DET
cana-4853	30	22	result	result	NOUN
cana-4853	30	23	of	of	ADP
cana-4853	30	24	recent	recent	ADJ
cana-4853	30	25	developments	development	NOUN
cana-4853	30	26	in	in	ADP
cana-4853	30	27	quaternary	quaternary	ADJ
cana-4853	30	28	reversible	reversible	ADJ
cana-4853	30	29	logic	logic	NOUN
cana-4853	30	30	[	[	X
cana-4853	30	31	15]–[17	15]–[17	NUM
cana-4853	30	32	]	]	PUNCT
cana-4853	30	33	.	.	PUNCT
cana-4853	31	1	circuits	circuit	NOUN
cana-4853	31	2	for	for	ADP
cana-4853	31	3	multiplexers	multiplexer	NOUN
cana-4853	31	4	and	and	CCONJ
cana-4853	31	5	demultiplexers	demultiplexer	NOUN
cana-4853	31	6	are	be	AUX
cana-4853	31	7	essential	essential	ADJ
cana-4853	31	8	parts	part	NOUN
cana-4853	31	9	of	of	ADP
cana-4853	31	10	desktops	desktop	NOUN
cana-4853	31	11	,	,	PUNCT
cana-4853	31	12	storage	storage	NOUN
cana-4853	31	13	systems	system	NOUN
cana-4853	31	14	,	,	PUNCT
cana-4853	31	15	communication	communication	NOUN
cana-4853	31	16	systems	system	NOUN
cana-4853	31	17	,	,	PUNCT
cana-4853	31	18	converters	converter	NOUN
cana-4853	31	19	,	,	PUNCT
cana-4853	31	20	and	and	CCONJ
cana-4853	31	21	arithmetic	arithmetic	ADJ
cana-4853	31	22	logic	logic	NOUN
cana-4853	31	23	units	unit	NOUN
cana-4853	31	24	[	[	X
cana-4853	31	25	17	17	NUM
cana-4853	31	26	]	]	PUNCT
cana-4853	31	27	.	.	PUNCT
cana-4853	32	1	with	with	ADP
cana-4853	32	2	an	an	DET
cana-4853	32	3	emphasis	emphasis	NOUN
cana-4853	32	4	on	on	ADP
cana-4853	32	5	developing	develop	VERB
cana-4853	32	6	more	more	ADV
cana-4853	32	7	effective	effective	ADJ
cana-4853	32	8	quantum	quantum	ADJ
cana-4853	32	9	quaternary	quaternary	ADJ
cana-4853	32	10	circuits	circuit	NOUN
cana-4853	32	11	,	,	PUNCT
cana-4853	32	12	this	this	DET
cana-4853	32	13	study	study	NOUN
cana-4853	32	14	introduces	introduce	VERB
cana-4853	32	15	novel	novel	ADJ
cana-4853	32	16	designs	design	NOUN
cana-4853	32	17	for	for	ADP
cana-4853	32	18	quaternary	quaternary	ADJ
cana-4853	32	19	reversible	reversible	ADJ
cana-4853	32	20	multiplexers	multiplexer	NOUN
cana-4853	32	21	and	and	CCONJ
cana-4853	32	22	demultiplexers	demultiplexer	NOUN
cana-4853	32	23	[	[	X
cana-4853	32	24	17]–[23	17]–[23	NUM
cana-4853	32	25	]	]	SYM
cana-4853	32	26	.	.	PUNCT
cana-4853	33	1	quantum	quantum	ADJ
cana-4853	33	2	cost	cost	NOUN
cana-4853	33	3	,	,	PUNCT
cana-4853	33	4	consistent	consistent	ADJ
cana-4853	33	5	inputs	input	NOUN
cana-4853	33	6	,	,	PUNCT
cana-4853	33	7	and	and	CCONJ
cana-4853	33	8	trash	trash	NOUN
cana-4853	33	9	outputs	output	NOUN
cana-4853	33	10	are	be	AUX
cana-4853	33	11	used	use	VERB
cana-4853	33	12	to	to	PART
cana-4853	33	13	evaluate	evaluate	VERB
cana-4853	33	14	the	the	DET
cana-4853	33	15	suggested	suggest	VERB
cana-4853	33	16	circuits	circuit	NOUN
cana-4853	33	17	.	.	PUNCT
cana-4853	34	1	with	with	ADP
cana-4853	34	2	an	an	DET
cana-4853	34	3	emphasis	emphasis	NOUN
cana-4853	34	4	on	on	ADP
cana-4853	34	5	reducing	reduce	VERB
cana-4853	34	6	this	this	PRON
cana-4853	34	7	.	.	PUNCT
cana-4853	35	1	the	the	DET
cana-4853	35	2	quantum	quantum	NOUN
cana-4853	35	3	cost	cost	NOUN
cana-4853	35	4	is	be	AUX
cana-4853	35	5	the	the	DET
cana-4853	35	6	sum	sum	NOUN
cana-4853	35	7	of	of	ADP
cana-4853	35	8	the	the	DET
cana-4853	35	9	2	2	NUM
cana-4853	35	10	-	-	PUNCT
cana-4853	35	11	qudit	qudit	NOUN
cana-4853	35	12	muthukrishnan	muthukrishnan	ADJ
cana-4853	35	13	-	-	PUNCT
cana-4853	35	14	stroud	stroud	ADJ
cana-4853	35	15	gates	gate	NOUN
cana-4853	35	16	and	and	CCONJ
cana-4853	35	17	quaternary	quaternary	ADJ
cana-4853	35	18	bidirectional	bidirectional	ADJ
cana-4853	35	19	1	1	NUM
cana-4853	35	20	-	-	PUNCT
cana-4853	35	21	qudit	qudit	NOUN
cana-4853	35	22	shift	shift	NOUN
cana-4853	35	23	gates	gate	NOUN
cana-4853	35	24	used	use	VERB
cana-4853	35	25	in	in	ADP
cana-4853	35	26	the	the	DET
cana-4853	35	27	circuit	circuit	NOUN
cana-4853	36	1	[	[	X
cana-4853	36	2	17	17	NUM
cana-4853	36	3	]	]	PUNCT
cana-4853	36	4	,	,	PUNCT
cana-4853	36	5	[	[	X
cana-4853	36	6	26	26	NUM
cana-4853	36	7	]	]	PUNCT
cana-4853	36	8	.	.	PUNCT
cana-4853	37	1	information	information	NOUN
cana-4853	37	2	loss	loss	NOUN
cana-4853	37	3	is	be	AUX
cana-4853	37	4	minimized	minimize	VERB
cana-4853	37	5	by	by	ADP
cana-4853	37	6	lowering	lower	VERB
cana-4853	37	7	the	the	DET
cana-4853	37	8	number	number	NOUN
cana-4853	37	9	of	of	ADP
cana-4853	37	10	repetitive	repetitive	ADJ
cana-4853	37	11	outputs	output	NOUN
cana-4853	37	12	needed	need	VERB
cana-4853	37	13	for	for	ADP
cana-4853	37	14	reversibility	reversibility	NOUN
cana-4853	37	15	,	,	PUNCT
cana-4853	37	16	which	which	PRON
cana-4853	37	17	is	be	AUX
cana-4853	37	18	indicated	indicate	VERB
cana-4853	37	19	by	by	ADP
cana-4853	37	20	the	the	DET
cana-4853	37	21	garbage	garbage	NOUN
cana-4853	37	22	output	output	NOUN
cana-4853	37	23	count	count	NOUN
cana-4853	38	1	[	[	X
cana-4853	38	2	17	17	NUM
cana-4853	38	3	]	]	PUNCT
cana-4853	38	4	,	,	PUNCT
cana-4853	38	5	[	[	X
cana-4853	38	6	25	25	NUM
cana-4853	38	7	]	]	PUNCT
cana-4853	38	8	.	.	PUNCT
cana-4853	39	1	th	th	X
cana-4853	39	2	standardized	standardize	VERB
cana-4853	39	3	quantities	quantity	NOUN
cana-4853	39	4	(	(	PUNCT
cana-4853	39	5	0	0	NUM
cana-4853	39	6	,	,	PUNCT
cana-4853	39	7	1	1	NUM
cana-4853	39	8	,	,	PUNCT
cana-4853	39	9	2	2	NUM
cana-4853	39	10	,	,	PUNCT
cana-4853	39	11	or	or	CCONJ
cana-4853	39	12	3	3	X
cana-4853	39	13	)	)	PUNCT
cana-4853	39	14	required	require	VERB
cana-4853	39	15	for	for	ADP
cana-4853	39	16	logic	logic	NOUN
cana-4853	39	17	circuit	circuit	NOUN
cana-4853	39	18	synthesis	synthesis	NOUN
cana-4853	39	19	are	be	AUX
cana-4853	39	20	represented	represent	VERB
cana-4853	39	21	by	by	ADP
cana-4853	39	22	the	the	DET
cana-4853	39	23	number	number	NOUN
cana-4853	39	24	of	of	ADP
cana-4853	39	25	steady	steady	ADJ
cana-4853	39	26	inputs	input	NOUN
cana-4853	39	27	;	;	PUNCT
cana-4853	39	28	a	a	DET
cana-4853	39	29	greater	great	ADJ
cana-4853	39	30	count	count	NOUN
cana-4853	39	31	improves	improve	VERB
cana-4853	39	32	circuit	circuit	NOUN
cana-4853	39	33	effectiveness	effectiveness	NOUN
cana-4853	39	34	[	[	X
cana-4853	39	35	17	17	NUM
cana-4853	39	36	]	]	PUNCT
cana-4853	39	37	,	,	PUNCT
cana-4853	39	38	[	[	X
cana-4853	39	39	24	24	NUM
cana-4853	39	40	]	]	PUNCT
cana-4853	39	41	.	.	PUNCT
cana-4853	40	1	the	the	DET
cana-4853	40	2	main	main	ADJ
cana-4853	40	3	features	feature	NOUN
cana-4853	40	4	are	be	AUX
cana-4853	40	5	reduced	reduce	VERB
cana-4853	40	6	while	while	SCONJ
cana-4853	40	7	creating	create	VERB
cana-4853	40	8	quantum	quantum	ADJ
cana-4853	40	9	quaternary	quaternary	ADJ
cana-4853	40	10	logic	logic	NOUN
cana-4853	40	11	circuits	circuit	NOUN
cana-4853	40	12	for	for	ADP
cana-4853	40	13	increased	increase	VERB
cana-4853	40	14	efficiency	efficiency	NOUN
cana-4853	40	15	.	.	PUNCT
cana-4853	41	1	the	the	DET
cana-4853	41	2	suggested	suggest	VERB
cana-4853	41	3	quaternary	quaternary	ADJ
cana-4853	41	4	circuits	circuit	NOUN
cana-4853	41	5	have	have	VERB
cana-4853	41	6	better	well	ADJ
cana-4853	41	7	garbage	garbage	NOUN
cana-4853	41	8	output	output	NOUN
cana-4853	41	9	counts	count	NOUN
cana-4853	41	10	,	,	PUNCT
cana-4853	41	11	constant	constant	ADJ
cana-4853	41	12	input	input	NOUN
cana-4853	41	13	counts	count	NOUN
cana-4853	41	14	,	,	PUNCT
cana-4853	41	15	quantum	quantum	NOUN
cana-4853	41	16	costs	cost	NOUN
cana-4853	41	17	and	and	CCONJ
cana-4853	41	18	its	its	PRON
cana-4853	41	19	truth	truth	NOUN
cana-4853	41	20	tables	table	NOUN
cana-4853	41	21	for	for	ADP
cana-4853	41	22	addition	addition	NOUN
cana-4853	41	23	,	,	PUNCT
cana-4853	41	24	multiplication	multiplication	NOUN
cana-4853	41	25	and	and	CCONJ
cana-4853	41	26	its	its	PRON
cana-4853	41	27	unitary	unitary	ADJ
cana-4853	41	28	quaternary	quaternary	ADJ
cana-4853	41	29	transform	transform	NOUN
cana-4853	41	30	matrices	matrix	NOUN
cana-4853	41	31	than	than	ADP
cana-4853	41	32	current	current	ADJ
cana-4853	41	33	designs	design	NOUN
cana-4853	41	34	[	[	X
cana-4853	41	35	17	17	NUM
cana-4853	41	36	]	]	PUNCT
cana-4853	41	37	,	,	PUNCT
cana-4853	41	38	[	[	X
cana-4853	41	39	19	19	NUM
cana-4853	41	40	]	]	PUNCT
cana-4853	41	41	,	,	PUNCT
cana-4853	41	42	and	and	CCONJ
cana-4853	41	43	[	[	X
cana-4853	41	44	23	23	NUM
cana-4853	41	45	]	]	PUNCT
cana-4853	41	46	.	.	PUNCT
cana-4853	42	1	the	the	DET
cana-4853	42	2	format	format	NOUN
cana-4853	42	3	of	of	ADP
cana-4853	42	4	this	this	DET
cana-4853	42	5	document	document	NOUN
cana-4853	42	6	is	be	AUX
cana-4853	42	7	as	as	SCONJ
cana-4853	42	8	follows	follow	VERB
cana-4853	42	9	:	:	PUNCT
cana-4853	42	10	the	the	DET
cana-4853	42	11	basics	basic	NOUN
cana-4853	42	12	of	of	ADP
cana-4853	42	13	quadraple	quadraple	ADJ
cana-4853	42	14	reversible	reversible	ADJ
cana-4853	42	15	gates	gate	NOUN
cana-4853	42	16	and	and	CCONJ
cana-4853	42	17	quaternary	quaternary	ADJ
cana-4853	42	18	galois	galois	NOUN
cana-4853	42	19	fields	field	NOUN
cana-4853	42	20	are	be	AUX
cana-4853	42	21	covered	cover	VERB
cana-4853	42	22	in	in	ADP
cana-4853	42	23	section	section	PROPN
cana-4853	42	24	ii	ii	PROPN
cana-4853	42	25	.	.	PUNCT
cana-4853	43	1	extensible	extensible	PROPN
cana-4853	43	2	quadruple	quadruple	PROPN
cana-4853	43	3	bidirectional	bidirectional	ADJ
cana-4853	43	4	multiplexer	multiplexer	NOUN
cana-4853	43	5	and	and	CCONJ
cana-4853	43	6	demultiplexer	demultiplexer	NOUN
cana-4853	43	7	design	design	NOUN
cana-4853	43	8	is	be	AUX
cana-4853	43	9	shown	show	VERB
cana-4853	43	10	in	in	ADP
cana-4853	43	11	section	section	NOUN
cana-4853	43	12	iii.conclusion	iii.conclusion	NOUN
cana-4853	43	13	,	,	PUNCT
cana-4853	43	14	discussed	discuss	VERB
cana-4853	43	15	in	in	ADP
cana-4853	43	16	section	section	NOUN
cana-4853	43	17	iv	iv	NUM
cana-4853	43	18	examines	examine	VERB
cana-4853	43	19	the	the	DET
cana-4853	43	20	assessment	assessment	NOUN
cana-4853	43	21	and	and	CCONJ
cana-4853	43	22	valuation	valuation	NOUN
cana-4853	43	23	of	of	ADP
cana-4853	43	24	the	the	DET
cana-4853	43	25	proposed	propose	VERB
cana-4853	43	26	networks	network	NOUN
cana-4853	43	27	.	.	PUNCT
cana-4853	44	1	2	2	X
cana-4853	44	2	.	.	X
cana-4853	44	3	fundamental	fundamental	ADJ
cana-4853	44	4	principles	principle	NOUN
cana-4853	44	5	quaternary	quaternary	ADJ
cana-4853	44	6	galois	galois	NOUN
cana-4853	44	7	fields	field	NOUN
cana-4853	44	8	and	and	CCONJ
cana-4853	44	9	quaternary	quaternary	ADJ
cana-4853	44	10	bidirectional	bidirectional	ADJ
cana-4853	44	11	gates	gate	NOUN
cana-4853	44	12	are	be	AUX
cana-4853	44	13	introduced	introduce	VERB
cana-4853	44	14	in	in	ADP
cana-4853	44	15	section	section	NOUN
cana-4853	44	16	i	i	PRON
cana-4853	44	17	and	and	CCONJ
cana-4853	44	18	are	be	AUX
cana-4853	44	19	discussed	discuss	VERB
cana-4853	44	20	in	in	ADP
cana-4853	44	21	more	more	ADJ
cana-4853	44	22	detail	detail	NOUN
cana-4853	44	23	in	in	ADP
cana-4853	44	24	the	the	DET
cana-4853	44	25	following	follow	VERB
cana-4853	44	26	sections	section	NOUN
cana-4853	44	27	.	.	PUNCT
cana-4853	45	1	figure	figure	NOUN
cana-4853	45	2	1	1	NUM
cana-4853	45	3	.	.	PUNCT
cana-4853	46	1	a	a	DET
cana-4853	46	2	graphic	graphic	ADJ
cana-4853	46	3	representation	representation	NOUN
cana-4853	46	4	of	of	ADP
cana-4853	46	5	the	the	DET
cana-4853	46	6	quaternary	quaternary	ADJ
cana-4853	46	7	1	1	NUM
cana-4853	46	8	-	-	PUNCT
cana-4853	46	9	qudit	qudit	NOUN
cana-4853	46	10	shift	shift	NOUN
cana-4853	46	11	gates	gate	NOUN
cana-4853	46	12	is	be	AUX
cana-4853	46	13	shown	show	VERB
cana-4853	46	14	.	.	PUNCT
cana-4853	47	1	communications	communication	NOUN
cana-4853	47	2	on	on	ADP
cana-4853	47	3	applied	apply	VERB
cana-4853	47	4	nonlinear	nonlinear	ADJ
cana-4853	47	5	analysis	analysis	NOUN
cana-4853	47	6	issn	issn	NOUN
cana-4853	47	7	:	:	PUNCT
cana-4853	47	8	1074	1074	NUM
cana-4853	47	9	-	-	PUNCT
cana-4853	47	10	133x	133x	NUM
cana-4853	47	11	vol	vol	VERB
cana-4853	47	12	32	32	NUM
cana-4853	47	13	no	no	NOUN
cana-4853	47	14	.	.	PUNCT
cana-4853	48	1	10s	10	NOUN
cana-4853	48	2	(	(	PUNCT
cana-4853	48	3	2025	2025	NUM
cana-4853	48	4	)	)	PUNCT
cana-4853	48	5	652	652	NUM
cana-4853	48	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	48	7	a.galois	a.galois	NOUN
cana-4853	48	8	field	field	NOUN
cana-4853	48	9	quaternary	quaternary	ADJ
cana-4853	48	10	logic	logic	NOUN
cana-4853	48	11	the	the	DET
cana-4853	48	12	values	value	NOUN
cana-4853	48	13	q	q	X
cana-4853	49	1	=	=	PUNCT
cana-4853	49	2	{	{	PUNCT
cana-4853	49	3	0	0	NUM
cana-4853	49	4	,	,	PUNCT
cana-4853	49	5	1	1	NUM
cana-4853	49	6	,	,	PUNCT
cana-4853	49	7	2	2	NUM
cana-4853	49	8	,	,	PUNCT
cana-4853	49	9	3	3	NUM
cana-4853	49	10	}	}	PUNCT
cana-4853	49	11	and	and	CCONJ
cana-4853	49	12	the	the	DET
cana-4853	49	13	addition	addition	NOUN
cana-4853	49	14	and	and	CCONJ
cana-4853	49	15	multiplication	multiplication	NOUN
cana-4853	49	16	processes	process	NOUN
cana-4853	49	17	that	that	PRON
cana-4853	49	18	characterize	characterize	VERB
cana-4853	49	19	the	the	DET
cana-4853	49	20	algebraic	algebraic	ADJ
cana-4853	49	21	framework	framework	NOUN
cana-4853	49	22	of	of	ADP
cana-4853	49	23	the	the	DET
cana-4853	49	24	galois	galois	PROPN
cana-4853	49	25	field	field	NOUN
cana-4853	49	26	(	(	PUNCT
cana-4853	49	27	gf4	gf4	NOUN
cana-4853	49	28	)	)	PUNCT
cana-4853	49	29	in	in	ADP
cana-4853	49	30	quaternary	quaternary	ADJ
cana-4853	49	31	logic	logic	NOUN
cana-4853	49	32	.	.	PUNCT
cana-4853	50	1	according	accord	VERB
cana-4853	50	2	to	to	ADP
cana-4853	50	3	[	[	X
cana-4853	50	4	27	27	NUM
cana-4853	50	5	]	]	PUNCT
cana-4853	50	6	,	,	PUNCT
cana-4853	50	7	these	these	PRON
cana-4853	50	8	have	have	VERB
cana-4853	50	9	multiplication	multiplication	NOUN
cana-4853	50	10	features	feature	NOUN
cana-4853	50	11	and	and	CCONJ
cana-4853	50	12	are	be	AUX
cana-4853	50	13	both	both	PRON
cana-4853	50	14	associative	associative	ADJ
cana-4853	50	15	and	and	CCONJ
cana-4853	50	16	additive	additive	NOUN
cana-4853	50	17	.	.	PUNCT
cana-4853	51	1	b.	b.	PROPN
cana-4853	51	2	first	first	ADJ
cana-4853	51	3	-	-	PUNCT
cana-4853	51	4	quantit	quantit	NOUN
cana-4853	51	5	shift	shift	NOUN
cana-4853	51	6	gates	gate	NOUN
cana-4853	51	7	in	in	ADP
cana-4853	51	8	bidirectional	bidirectional	ADJ
cana-4853	51	9	logic	logic	NOUN
cana-4853	51	10	,	,	PUNCT
cana-4853	51	11	quaternary	quaternary	ADJ
cana-4853	51	12	1	1	NUM
cana-4853	51	13	-	-	PUNCT
cana-4853	51	14	qudit	qudit	NOUN
cana-4853	51	15	shift	shift	NOUN
cana-4853	51	16	gates	gate	NOUN
cana-4853	51	17	function	function	VERB
cana-4853	51	18	as	as	ADP
cana-4853	51	19	4x4	4x4	NUM
cana-4853	51	20	unitary	unitary	ADJ
cana-4853	51	21	matrices	matrix	NOUN
cana-4853	51	22	that	that	PRON
cana-4853	51	23	use	use	VERB
cana-4853	51	24	a	a	DET
cana-4853	51	25	z	z	NOUN
cana-4853	51	26	transform	transform	NOUN
cana-4853	51	27	to	to	PART
cana-4853	51	28	translate	translate	VERB
cana-4853	51	29	input	input	NOUN
cana-4853	51	30	x	x	PART
cana-4853	51	31	to	to	PART
cana-4853	51	32	output	output	VERB
cana-4853	51	33	y[27	y[27	PROPN
cana-4853	51	34	]	]	PUNCT
cana-4853	51	35	.	.	PUNCT
cana-4853	52	1	figure	figure	NOUN
cana-4853	52	2	2	2	NUM
cana-4853	52	3	.	.	PUNCT
cana-4853	53	1	the	the	DET
cana-4853	53	2	quaternary	quaternary	ADJ
cana-4853	53	3	2	2	NUM
cana-4853	53	4	-	-	PUNCT
cana-4853	53	5	qudit	qudit	NOUN
cana-4853	53	6	muthukrishnanstroud	muthukrishnanstroud	ADJ
cana-4853	53	7	gate	gate	NOUN
cana-4853	53	8	is	be	AUX
cana-4853	53	9	shown	show	VERB
cana-4853	53	10	symbolicall	symbolicall	PROPN
cana-4853	53	11	c.	c.	PROPN
cana-4853	53	12	second	second	ADJ
cana-4853	53	13	-	-	PUNCT
cana-4853	53	14	quantative	quantative	ADJ
cana-4853	53	15	muthukrishnan	muthukrishnan	ADJ
cana-4853	53	16	-	-	PUNCT
cana-4853	53	17	stroud	stroud	NOUN
cana-4853	53	18	gates	gate	VERB
cana-4853	53	19	a	a	DET
cana-4853	53	20	family	family	NOUN
cana-4853	53	21	of	of	ADP
cana-4853	53	22	2	2	NUM
cana-4853	53	23	-	-	PUNCT
cana-4853	53	24	qudit	qudit	NOUN
cana-4853	53	25	gates	gate	NOUN
cana-4853	53	26	for	for	ADP
cana-4853	53	27	liquid	liquid	ADJ
cana-4853	53	28	iontrap	iontrap	NOUN
cana-4853	53	29	quantum	quantum	ADJ
cana-4853	53	30	computation	computation	NOUN
cana-4853	53	31	was	be	AUX
cana-4853	53	32	presented	present	VERB
cana-4853	53	33	by	by	ADP
cana-4853	53	34	muthukrishnan	muthukrishnan	PROPN
cana-4853	53	35	and	and	CCONJ
cana-4853	53	36	stroud	stroud	ADJ
cana-4853	53	37	[	[	X
cana-4853	53	38	28	28	NUM
cana-4853	53	39	]	]	PUNCT
cana-4853	53	40	.	.	PUNCT
cana-4853	54	1	the	the	DET
cana-4853	54	2	outputs	output	NOUN
cana-4853	54	3	under	under	AUX
cana-4853	54	4	go	go	VERB
cana-4853	54	5	particular	particular	ADJ
cana-4853	54	6	changes	change	NOUN
cana-4853	54	7	where	where	SCONJ
cana-4853	54	8	the	the	DET
cana-4853	54	9	control	control	NOUN
cana-4853	54	10	input	input	NOUN
cana-4853	54	11	x=3	x=3	PROPN
cana-4853	54	12	is	be	AUX
cana-4853	54	13	equal	equal	ADJ
cana-4853	54	14	to	to	ADP
cana-4853	54	15	3	3	NUM
cana-4853	54	16	then	then	ADV
cana-4853	54	17	,	,	PUNCT
cana-4853	54	18	iv=	iv=	PROPN
cana-4853	54	19	(	(	PUNCT
cana-4853	54	20	x	x	X
cana-4853	54	21	,	,	PUNCT
cana-4853	54	22	p	p	NOUN
cana-4853	54	23	)	)	PUNCT
cana-4853	54	24	ov	ov	PROPN
cana-4853	55	1	=	=	NOUN
cana-4853	55	2	=	=	X
cana-4853	55	3	(	(	PUNCT
cana-4853	55	4	y	y	X
cana-4853	55	5	=	=	NOUN
cana-4853	55	6	x	x	NOUN
cana-4853	55	7	,	,	PUNCT
cana-4853	55	8	q	q	PROPN
cana-4853	55	9	=	=	NOUN
cana-4853	55	10	z	z	NOUN
cana-4853	55	11	transform	transform	NOUN
cana-4853	55	12	(	(	PUNCT
cana-4853	55	13	1	1	NUM
cana-4853	55	14	-	-	PUNCT
cana-4853	55	15	qudit	qudit	NOUN
cana-4853	55	16	transform	transform	NOUN
cana-4853	55	17	)	)	PUNCT
cana-4853	55	18	.the	.the	PRON
cana-4853	55	19	inputs	input	NOUN
cana-4853	55	20	of	of	ADP
cana-4853	55	21	the	the	DET
cana-4853	55	22	quadraple	quadraple	ADJ
cana-4853	55	23	muthukrishnan	muthukrishnan	PROPN
cana-4853	55	24	-	-	PUNCT
cana-4853	55	25	stroud	stroud	ADJ
cana-4853	55	26	(	(	PUNCT
cana-4853	55	27	m	m	NOUN
cana-4853	55	28	-	-	PUNCT
cana-4853	55	29	s	s	NOUN
cana-4853	55	30	)	)	PUNCT
cana-4853	55	31	gate	gate	NOUN
cana-4853	55	32	are	be	AUX
cana-4853	55	33	x	x	PUNCT
cana-4853	55	34	and	and	CCONJ
cana-4853	55	35	p	p	X
cana-4853	55	36	,	,	PUNCT
cana-4853	55	37	and	and	CCONJ
cana-4853	55	38	the	the	DET
cana-4853	55	39	outputs	output	NOUN
cana-4853	55	40	are	be	AUX
cana-4853	55	41	y	y	PROPN
cana-4853	55	42	and	and	CCONJ
cana-4853	55	43	q.	q.	VERB
cana-4853	55	44	when	when	SCONJ
cana-4853	55	45	x	x	PROPN
cana-4853	55	46	=	=	SYM
cana-4853	55	47	3	3	NUM
cana-4853	55	48	,	,	PUNCT
cana-4853	55	49	y	y	PROPN
cana-4853	55	50	=	=	SYM
cana-4853	55	51	x	x	NOUN
cana-4853	55	52	,	,	PUNCT
cana-4853	55	53	and	and	CCONJ
cana-4853	55	54	q	q	NOUN
cana-4853	55	55	is	be	AUX
cana-4853	55	56	subjected	subject	VERB
cana-4853	55	57	to	to	ADP
cana-4853	55	58	a	a	DET
cana-4853	55	59	1qudit	1qudit	NUM
cana-4853	55	60	transform	transform	NOUN
cana-4853	55	61	of	of	ADP
cana-4853	55	62	input	input	NOUN
cana-4853	55	63	b	b	NOUN
cana-4853	55	64	,	,	PUNCT
cana-4853	55	65	x	x	PUNCT
cana-4853	56	1	=	=	SYM
cana-4853	56	2	p.	p.	NOUN
cana-4853	56	3	otherwise	otherwise	ADV
cana-4853	56	4	,	,	PUNCT
cana-4853	56	5	q	q	PUNCT
cana-4853	56	6	equals	equal	VERB
cana-4853	56	7	p.	p.	NOUN
cana-4853	56	8	this	this	DET
cana-4853	56	9	gate	gate	NOUN
cana-4853	56	10	,	,	PUNCT
cana-4853	56	11	which	which	PRON
cana-4853	56	12	has	have	VERB
cana-4853	56	13	a	a	DET
cana-4853	56	14	quantum	quantum	ADJ
cana-4853	56	15	cost	cost	NOUN
cana-4853	56	16	of	of	ADP
cana-4853	56	17	1	1	NUM
cana-4853	56	18	,	,	PUNCT
cana-4853	56	19	is	be	AUX
cana-4853	56	20	shown	show	VERB
cana-4853	56	21	in	in	ADP
cana-4853	56	22	figure	figure	NOUN
cana-4853	56	23	2	2	NUM
cana-4853	56	24	.	.	NOUN
cana-4853	56	25	d.quaternary	d.quaternary	ADJ
cana-4853	56	26	3	3	NUM
cana-4853	56	27	-	-	PUNCT
cana-4853	56	28	qudit	qudit	NOUN
cana-4853	56	29	managed	manage	VERB
cana-4853	56	30	feynman	feynman	PROPN
cana-4853	56	31	gate	gate	VERB
cana-4853	56	32	the	the	DET
cana-4853	56	33	quaternary	quaternary	ADJ
cana-4853	56	34	controllable	controllable	ADJ
cana-4853	56	35	feynman	feynman	PROPN
cana-4853	56	36	gate	gate	PROPN
cana-4853	56	37	is	be	AUX
cana-4853	56	38	a	a	DET
cana-4853	56	39	three	three	NUM
cana-4853	56	40	-	-	PUNCT
cana-4853	56	41	entry	entry	NOUN
cana-4853	56	42	,	,	PUNCT
cana-4853	56	43	three	three	NUM
cana-4853	56	44	-	-	PUNCT
cana-4853	56	45	endt	endt	NOUN
cana-4853	56	46	gate	gate	NOUN
cana-4853	56	47	that	that	SCONJ
cana-4853	56	48	,	,	PUNCT
cana-4853	56	49	when	when	SCONJ
cana-4853	56	50	ν=	ν=	NOUN
cana-4853	56	51	3	3	NUM
cana-4853	56	52	x=3	x=3	X
cana-4853	56	53	,	,	PUNCT
cana-4853	56	54	maps	map	NOUN
cana-4853	56	55	(	(	PUNCT
cana-4853	56	56	𝑋	𝑋	NOUN
cana-4853	56	57	,	,	PUNCT
cana-4853	56	58	𝑃	𝑃	PROPN
cana-4853	56	59	,	,	PUNCT
cana-4853	56	60	𝑅	𝑅	NOUN
cana-4853	56	61	)	)	PUNCT
cana-4853	56	62	(	(	PUNCT
cana-4853	56	63	x	x	X
cana-4853	56	64	,	,	PUNCT
cana-4853	56	65	p	p	X
cana-4853	56	66	,	,	PUNCT
cana-4853	56	67	r	r	NOUN
cana-4853	56	68	)	)	PUNCT
cana-4853	56	69	to	to	ADP
cana-4853	56	70	(	(	PUNCT
cana-4853	56	71	𝑌	𝑌	PROPN
cana-4853	56	72	=	=	SYM
cana-4853	56	73	𝑋	𝑋	PROPN
cana-4853	56	74	,	,	PUNCT
cana-4853	56	75	𝑇=	𝑇=	PROPN
cana-4853	56	76	𝑃	𝑃	PROPN
cana-4853	56	77	,	,	PUNCT
cana-4853	56	78	𝑆	𝑆	PROPN
cana-4853	56	79	=	=	SYM
cana-4853	56	80	𝑃⊕𝑅	𝑃⊕𝑅	PROPN
cana-4853	56	81	)	)	PUNCT
cana-4853	56	82	(	(	PUNCT
cana-4853	56	83	y	y	X
cana-4853	56	84	=	=	NOUN
cana-4853	56	85	x	x	PROPN
cana-4853	56	86	,	,	PUNCT
cana-4853	56	87	t	t	PROPN
cana-4853	56	88	=	=	SYM
cana-4853	56	89	p	p	PROPN
cana-4853	56	90	,	,	PUNCT
cana-4853	56	91	s	s	PROPN
cana-4853	56	92	=	=	PROPN
cana-4853	56	93	p⊕r	p⊕r	PROPN
cana-4853	56	94	)	)	PUNCT
cana-4853	56	95	;	;	PUNCT
cana-4853	56	96	otherwise	otherwise	ADV
cana-4853	56	97	,	,	PUNCT
cana-4853	56	98	r	r	NOUN
cana-4853	56	99	stays	stay	VERB
cana-4853	56	100	constant	constant	ADJ
cana-4853	56	101	[	[	X
cana-4853	56	102	29	29	NUM
cana-4853	56	103	]	]	PUNCT
cana-4853	56	104	.	.	PUNCT
cana-4853	57	1	and	and	CCONJ
cana-4853	57	2	can	can	AUX
cana-4853	57	3	be	be	AUX
cana-4853	57	4	removed	remove	VERB
cana-4853	57	5	with	with	ADP
cana-4853	57	6	a	a	DET
cana-4853	57	7	quantum	quantum	ADJ
cana-4853	57	8	cost	cost	NOUN
cana-4853	57	9	of	of	ADP
cana-4853	57	10	6	6	NUM
cana-4853	57	11	3	3	NUM
cana-4853	57	12	.	.	PUNCT
cana-4853	57	13	proposed	propose	VERB
cana-4853	57	14	quaternary	quaternary	ADJ
cana-4853	57	15	reversible	reversible	ADJ
cana-4853	57	16	circuits	circuit	NOUN
cana-4853	57	17	a	a	DET
cana-4853	57	18	scalable	scalable	ADJ
cana-4853	57	19	4×1	4×1	ADJ
cana-4853	57	20	reversible	reversible	ADJ
cana-4853	57	21	multiplexer	multiplexer	NOUN
cana-4853	57	22	is	be	AUX
cana-4853	57	23	used	use	VERB
cana-4853	57	24	to	to	PART
cana-4853	57	25	create	create	VERB
cana-4853	57	26	quaternary	quaternary	ADJ
cana-4853	57	27	bidirectional	bidirectional	NOUN
cana-4853	57	28	16×1	16×1	PROPN
cana-4853	57	29	and	and	CCONJ
cana-4853	57	30	n×1	n×1	NOUN
cana-4853	57	31	multiplexers	multiplexer	NOUN
cana-4853	57	32	.	.	PUNCT
cana-4853	58	1	as	as	ADV
cana-4853	58	2	same	same	ADJ
cana-4853	58	3	as	as	ADP
cana-4853	58	4	to	to	ADP
cana-4853	58	5	th	th	PRON
cana-4853	58	6	emultiplexer.in	emultiplexer.in	X
cana-4853	58	7	order	order	NOUN
cana-4853	58	8	to	to	PART
cana-4853	58	9	reduce	reduce	VERB
cana-4853	58	10	garbage	garbage	NOUN
cana-4853	58	11	outputs	output	NOUN
cana-4853	58	12	,	,	PUNCT
cana-4853	58	13	constant	constant	ADJ
cana-4853	58	14	inputs	input	NOUN
cana-4853	58	15	,	,	PUNCT
cana-4853	58	16	and	and	CCONJ
cana-4853	58	17	quantum	quantum	ADJ
cana-4853	58	18	cost	cost	NOUN
cana-4853	58	19	,	,	PUNCT
cana-4853	58	20	the	the	DET
cana-4853	58	21	design	design	NOUN
cana-4853	58	22	makes	make	VERB
cana-4853	58	23	use	use	NOUN
cana-4853	58	24	of	of	ADP
cana-4853	58	25	3	3	NUM
cana-4853	58	26	-	-	PUNCT
cana-4853	58	27	qudit	qudit	NOUN
cana-4853	58	28	coordinated	coordinate	VERB
cana-4853	58	29	feynman	feynman	ADJ
cana-4853	58	30	gates	gate	NOUN
cana-4853	58	31	and	and	CCONJ
cana-4853	58	32	1qudit	1qudit	NUM
cana-4853	58	33	shift	shift	NOUN
cana-4853	58	34	gates	gate	NOUN
cana-4853	58	35	.	.	PUNCT
cana-4853	59	1	a.	a.	PROPN
cana-4853	59	2	proposed	propose	VERB
cana-4853	59	3	quaternary	quaternary	ADJ
cana-4853	59	4	reversible	reversible	ADJ
cana-4853	59	5	multiplexer	multiplexer	NOUN
cana-4853	59	6	circuit	circuit	NOUN
cana-4853	59	7	an	an	DET
cana-4853	59	8	input	input	NOUN
cana-4853	59	9	is	be	AUX
cana-4853	59	10	chosen	choose	VERB
cana-4853	59	11	by	by	ADP
cana-4853	59	12	a	a	DET
cana-4853	59	13	quaternary	quaternary	ADJ
cana-4853	59	14	4	4	NUM
cana-4853	59	15	×	×	NOUN
cana-4853	59	16	1	1	NUM
cana-4853	59	17	multiplexer	multiplexer	NOUN
cana-4853	59	18	using	use	VERB
cana-4853	59	19	a	a	DET
cana-4853	59	20	selection	selection	NOUN
cana-4853	59	21	line	line	NOUN
cana-4853	59	22	a	a	PRON
cana-4853	59	23	,	,	PUNCT
cana-4853	59	24	which	which	PRON
cana-4853	59	25	may	may	AUX
cana-4853	59	26	have	have	VERB
cana-4853	59	27	values	value	NOUN
cana-4853	59	28	of	of	ADP
cana-4853	59	29	0	0	NUM
cana-4853	59	30	,	,	PUNCT
cana-4853	59	31	1	1	NUM
cana-4853	59	32	,	,	PUNCT
cana-4853	59	33	2	2	NUM
cana-4853	59	34	,	,	PUNCT
cana-4853	59	35	or	or	CCONJ
cana-4853	59	36	3.when	3.when	NUM
cana-4853	59	37	a	a	PRON
cana-4853	59	38	=	=	SYM
cana-4853	59	39	0	0	NUM
cana-4853	59	40	,	,	PUNCT
cana-4853	59	41	1	1	NUM
cana-4853	59	42	,	,	PUNCT
cana-4853	59	43	2	2	NUM
cana-4853	59	44	,	,	PUNCT
cana-4853	59	45	or	or	CCONJ
cana-4853	59	46	3	3	NUM
cana-4853	59	47	,	,	PUNCT
cana-4853	59	48	and	and	CCONJ
cana-4853	59	49	𝐴	𝐴	PROPN
cana-4853	59	50	=	=	SYM
cana-4853	59	51	0	0	NUM
cana-4853	59	52	,	,	PUNCT
cana-4853	59	53	1	1	NUM
cana-4853	59	54	,	,	PUNCT
cana-4853	59	55	2	2	NUM
cana-4853	59	56	,	,	PUNCT
cana-4853	59	57	or	or	CCONJ
cana-4853	59	58	3	3	NUM
cana-4853	59	59	,	,	PUNCT
cana-4853	59	60	the	the	DET
cana-4853	59	61	equivalent	equivalent	ADJ
cana-4853	59	62	output	output	NOUN
cana-4853	59	63	is	be	AUX
cana-4853	59	64	either	either	CCONJ
cana-4853	59	65	a0	a0	PROPN
cana-4853	59	66	,	,	PUNCT
cana-4853	59	67	a1	a1	PROPN
cana-4853	59	68	,	,	PUNCT
cana-4853	59	69	a2	a2	PROPN
cana-4853	59	70	,	,	PUNCT
cana-4853	59	71	or	or	CCONJ
cana-4853	59	72	a3	a3	NOUN
cana-4853	59	73	.	.	PUNCT
cana-4853	60	1	communications	communication	NOUN
cana-4853	60	2	on	on	ADP
cana-4853	60	3	applied	apply	VERB
cana-4853	60	4	nonlinear	nonlinear	ADJ
cana-4853	60	5	analysis	analysis	NOUN
cana-4853	60	6	issn	issn	NOUN
cana-4853	60	7	:	:	PUNCT
cana-4853	60	8	1074	1074	NUM
cana-4853	60	9	-	-	PUNCT
cana-4853	60	10	133x	133x	NUM
cana-4853	60	11	vol	vol	VERB
cana-4853	60	12	32	32	NUM
cana-4853	60	13	no	no	NOUN
cana-4853	60	14	.	.	PUNCT
cana-4853	61	1	10s	10	NOUN
cana-4853	61	2	(	(	PUNCT
cana-4853	61	3	2025	2025	NUM
cana-4853	61	4	)	)	PUNCT
cana-4853	61	5	653	653	NUM
cana-4853	61	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	61	7	(	(	PUNCT
cana-4853	61	8	a	a	NOUN
cana-4853	61	9	)	)	PUNCT
cana-4853	61	10	(	(	PUNCT
cana-4853	61	11	b	b	X
cana-4853	61	12	)	)	PUNCT
cana-4853	61	13	figure	figure	NOUN
cana-4853	61	14	3	3	NUM
cana-4853	61	15	.	.	PUNCT
cana-4853	62	1	a	a	DET
cana-4853	62	2	)	)	PUNCT
cana-4853	62	3	symbolic	symbolic	ADJ
cana-4853	62	4	depiction	depiction	NOUN
cana-4853	62	5	of	of	ADP
cana-4853	62	6	the	the	DET
cana-4853	62	7	suggested	suggest	VERB
cana-4853	62	8	quaternary	quaternary	ADJ
cana-4853	62	9	reversible	reversible	ADJ
cana-4853	62	10	4	4	NUM
cana-4853	62	11	×	×	NOUN
cana-4853	62	12	1	1	NUM
cana-4853	62	13	multiplexer	multiplexer	NOUN
cana-4853	62	14	circuit	circuit	NOUN
cana-4853	62	15	.	.	PUNCT
cana-4853	63	1	b	b	X
cana-4853	63	2	)	)	PUNCT
cana-4853	63	3	m	m	PROPN
cana-4853	63	4	-	-	PUNCT
cana-4853	63	5	s	s	PART
cana-4853	63	6	and	and	CCONJ
cana-4853	63	7	shift	shift	NOUN
cana-4853	63	8	gates	gate	NOUN
cana-4853	63	9	are	be	AUX
cana-4853	63	10	used	use	VERB
cana-4853	63	11	in	in	ADP
cana-4853	63	12	the	the	DET
cana-4853	63	13	implementation	implementation	NOUN
cana-4853	63	14	.	.	PUNCT
cana-4853	64	1	the	the	DET
cana-4853	64	2	suggested	suggest	VERB
cana-4853	64	3	quaternary	quaternary	ADJ
cana-4853	64	4	reversible	reversible	ADJ
cana-4853	64	5	4	4	NUM
cana-4853	64	6	×	×	NOUN
cana-4853	64	7	1	1	NUM
cana-4853	64	8	multiplexer	multiplexer	NOUN
cana-4853	64	9	circuit	circuit	NOUN
cana-4853	64	10	,	,	PUNCT
cana-4853	64	11	which	which	PRON
cana-4853	64	12	makes	make	VERB
cana-4853	64	13	use	use	NOUN
cana-4853	64	14	of	of	ADP
cana-4853	64	15	four	four	NUM
cana-4853	64	16	quadraple	quadraple	ADJ
cana-4853	64	17	1qudit	1qudit	NUM
cana-4853	64	18	shift	shift	NOUN
cana-4853	64	19	gates	gate	NOUN
cana-4853	64	20	and	and	CCONJ
cana-4853	64	21	four	four	NUM
cana-4853	64	22	quaternary	quaternary	ADJ
cana-4853	64	23	3	3	NUM
cana-4853	64	24	-	-	PUNCT
cana-4853	64	25	qudit	qudit	NOUN
cana-4853	64	26	controlled	control	VERB
cana-4853	64	27	feynman	feynman	PROPN
cana-4853	64	28	gates	gates	PROPN
cana-4853	64	29	,	,	PUNCT
cana-4853	64	30	is	be	AUX
cana-4853	64	31	shown	show	VERB
cana-4853	64	32	in	in	ADP
cana-4853	64	33	figure	figure	NOUN
cana-4853	64	34	3a	3a	NUM
cana-4853	64	35	.	.	PUNCT
cana-4853	65	1	together	together	ADV
cana-4853	65	2	with	with	ADP
cana-4853	65	3	a	a	DET
cana-4853	65	4	constant	constant	ADJ
cana-4853	65	5	input	input	NOUN
cana-4853	65	6	of	of	ADP
cana-4853	65	7	0	0	NUM
cana-4853	65	8	,	,	PUNCT
cana-4853	65	9	the	the	DET
cana-4853	65	10	main	main	ADJ
cana-4853	65	11	inputs	input	NOUN
cana-4853	65	12	are	be	AUX
cana-4853	65	13	a0	a0	NOUN
cana-4853	65	14	to	to	PART
cana-4853	65	15	a3	a3	VERB
cana-4853	65	16	.	.	PUNCT
cana-4853	66	1	the	the	DET
cana-4853	66	2	output	output	NOUN
cana-4853	66	3	o	o	NOUN
cana-4853	66	4	is	be	AUX
cana-4853	66	5	determined	determine	VERB
cana-4853	66	6	by	by	ADP
cana-4853	66	7	selector	selector	NOUN
cana-4853	66	8	x	x	NOUN
cana-4853	66	9	,	,	PUNCT
cana-4853	66	10	whereas	whereas	SCONJ
cana-4853	66	11	trash	trash	NOUN
cana-4853	66	12	outputs	output	NOUN
cana-4853	66	13	are	be	AUX
cana-4853	66	14	represented	represent	VERB
cana-4853	66	15	by	by	ADP
cana-4853	66	16	y	y	PROPN
cana-4853	66	17	,	,	PUNCT
cana-4853	66	18	q0	q0	PROPN
cana-4853	66	19	,	,	PUNCT
cana-4853	66	20	q3	q3	PROPN
cana-4853	66	21	,	,	PUNCT
cana-4853	66	22	and	and	CCONJ
cana-4853	66	23	q3	q3	PROPN
cana-4853	66	24	.	.	PUNCT
cana-4853	67	1	the	the	DET
cana-4853	67	2	inputs	input	NOUN
cana-4853	67	3	a0	a0	PROPN
cana-4853	67	4	to	to	PART
cana-4853	67	5	a3	a3	VERB
cana-4853	67	6	correspond	correspond	ADV
cana-4853	67	7	to	to	ADP
cana-4853	67	8	the	the	DET
cana-4853	67	9	outputs	output	NOUN
cana-4853	67	10	q0	q0	PROPN
cana-4853	67	11	to	to	ADP
cana-4853	67	12	q3	q3	PROPN
cana-4853	67	13	,	,	PUNCT
cana-4853	67	14	and	and	CCONJ
cana-4853	67	15	y	y	PROPN
cana-4853	67	16	makes	make	VERB
cana-4853	67	17	sense	sense	NOUN
cana-4853	67	18	in	in	ADP
cana-4853	67	19	relation	relation	NOUN
cana-4853	67	20	to	to	ADP
cana-4853	67	21	selection	selection	NOUN
cana-4853	67	22	x.	x.	NOUN
cana-4853	68	1	the	the	DET
cana-4853	68	2	initial	initial	ADJ
cana-4853	68	3	managed	manage	VERB
cana-4853	68	4	feynman	feynman	PROPN
cana-4853	68	5	gate	gate	PROPN
cana-4853	68	6	(	(	PUNCT
cana-4853	68	7	control	control	NOUN
cana-4853	68	8	value	value	NOUN
cana-4853	68	9	3	3	NUM
cana-4853	68	10	)	)	PUNCT
cana-4853	68	11	sets	set	VERB
cana-4853	68	12	o	o	NOUN
cana-4853	68	13	=	=	X
cana-4853	68	14	a0	a0	NOUN
cana-4853	68	15	when	when	SCONJ
cana-4853	68	16	x=0	x=0	PROPN
cana-4853	68	17	.	.	PUNCT
cana-4853	69	1	the	the	DET
cana-4853	69	2	2nd	2nd	PROPN
cana-4853	69	3	controlled	control	VERB
cana-4853	69	4	feynman	feynman	PROPN
cana-4853	69	5	gate	gate	PROPN
cana-4853	69	6	,	,	PUNCT
cana-4853	69	7	which	which	PRON
cana-4853	69	8	similarly	similarly	ADV
cana-4853	69	9	has	have	VERB
cana-4853	69	10	control	control	NOUN
cana-4853	69	11	value	value	NOUN
cana-4853	69	12	3	3	NUM
cana-4853	69	13	,	,	PUNCT
cana-4853	69	14	sets	set	VERB
cana-4853	69	15	o	o	NOUN
cana-4853	69	16	=	=	NOUN
cana-4853	69	17	a1	a1	NOUN
cana-4853	69	18	if	if	SCONJ
cana-4853	69	19	x=1	x=1	PROPN
cana-4853	69	20	.	.	PUNCT
cana-4853	70	1	figure	figure	VERB
cana-4853	70	2	6a	6a	NOUN
cana-4853	70	3	displays	display	VERB
cana-4853	70	4	the	the	DET
cana-4853	70	5	logical	logical	ADJ
cana-4853	70	6	layout	layout	NOUN
cana-4853	70	7	of	of	ADP
cana-4853	70	8	the	the	DET
cana-4853	70	9	suggested	suggest	VERB
cana-4853	70	10	quaternary	quaternary	ADJ
cana-4853	70	11	16	16	NUM
cana-4853	70	12	×	×	NOUN
cana-4853	70	13	1	1	NUM
cana-4853	70	14	multiplexer	multiplexer	NOUN
cana-4853	70	15	,	,	PUNCT
cana-4853	70	16	which	which	PRON
cana-4853	70	17	was	be	AUX
cana-4853	70	18	constructed	construct	VERB
cana-4853	70	19	using	use	VERB
cana-4853	70	20	4×1	4×1	NUM
cana-4853	70	21	multiplexers	multiplexer	NOUN
cana-4853	70	22	.	.	PUNCT
cana-4853	71	1	there	there	PRON
cana-4853	71	2	are	be	VERB
cana-4853	71	3	five	five	NUM
cana-4853	71	4	4	4	NUM
cana-4853	71	5	×	×	NOUN
cana-4853	71	6	1	1	NUM
cana-4853	71	7	quaternary	quaternary	ADJ
cana-4853	71	8	multiplexers	multiplexer	NOUN
cana-4853	71	9	in	in	ADP
cana-4853	71	10	this	this	DET
cana-4853	71	11	configuration	configuration	NOUN
cana-4853	71	12	.	.	PUNCT
cana-4853	72	1	the	the	DET
cana-4853	72	2	1st	1st	PROPN
cana-4853	72	3	row	row	NOUN
cana-4853	72	4	multiplexers	multiplexer	NOUN
cana-4853	72	5	pick	pick	VERB
cana-4853	72	6	their	their	PRON
cana-4853	72	7	second	second	ADJ
cana-4853	72	8	inputs	input	NOUN
cana-4853	72	9	when	when	SCONJ
cana-4853	72	10	𝐵	𝐵	NOUN
cana-4853	72	11	=	=	NOUN
cana-4853	72	12	1	1	NUM
cana-4853	72	13	b=1	b=1	NOUN
cana-4853	72	14	,	,	PUNCT
cana-4853	72	15	and	and	CCONJ
cana-4853	72	16	they	they	PRON
cana-4853	72	17	trigger	trigger	VERB
cana-4853	72	18	their	their	PRON
cana-4853	72	19	first	first	ADJ
cana-4853	72	20	inputs	input	NOUN
cana-4853	73	1	when	when	SCONJ
cana-4853	73	2	𝑃	𝑃	NOUN
cana-4853	73	3	=	=	SYM
cana-4853	73	4	0	0	NUM
cana-4853	73	5	p=0	p=0	PROPN
cana-4853	73	6	.	.	PUNCT
cana-4853	74	1	likewise	likewise	ADV
cana-4853	74	2	,	,	PUNCT
cana-4853	74	3	for	for	ADP
cana-4853	74	4	p=2	p=2	PROPN
cana-4853	74	5	and	and	CCONJ
cana-4853	74	6	p=3	p=3	PROPN
cana-4853	74	7	,	,	PUNCT
cana-4853	74	8	respectively	respectively	ADV
cana-4853	74	9	,	,	PUNCT
cana-4853	74	10	the	the	DET
cana-4853	74	11	third	third	ADJ
cana-4853	74	12	and	and	CCONJ
cana-4853	74	13	fourth	fourth	ADJ
cana-4853	74	14	inputs	input	NOUN
cana-4853	74	15	are	be	AUX
cana-4853	74	16	activated	activate	VERB
cana-4853	74	17	.	.	PUNCT
cana-4853	75	1	the	the	DET
cana-4853	75	2	second	second	ADJ
cana-4853	75	3	,	,	PUNCT
cana-4853	75	4	third	third	ADJ
cana-4853	75	5	,	,	PUNCT
cana-4853	75	6	and	and	CCONJ
cana-4853	75	7	fourth	fourth	ADJ
cana-4853	75	8	multiplexers	multiplexer	NOUN
cana-4853	75	9	route	route	VERB
cana-4853	75	10	their	their	PRON
cana-4853	75	11	outputs	output	NOUN
cana-4853	75	12	to	to	ADP
cana-4853	75	13	o	o	NOUN
cana-4853	75	14	when	when	SCONJ
cana-4853	75	15	x=1,2	x=1,2	ADJ
cana-4853	75	16	,	,	PUNCT
cana-4853	75	17	or	or	CCONJ
cana-4853	75	18	3	3	NUM
cana-4853	75	19	,	,	PUNCT
cana-4853	75	20	but	but	CCONJ
cana-4853	75	21	the	the	DET
cana-4853	75	22	primary	primary	ADJ
cana-4853	75	23	multiplexer	multiplexer	NOUN
cana-4853	75	24	routes	route	VERB
cana-4853	75	25	its	its	PRON
cana-4853	75	26	output	output	NOUN
cana-4853	75	27	to	to	ADP
cana-4853	75	28	o	o	NOUN
cana-4853	75	29	when	when	SCONJ
cana-4853	75	30	x=0.with	x=0.with	DET
cana-4853	75	31	red	red	ADJ
cana-4853	75	32	boxes	box	NOUN
cana-4853	75	33	denoting	denote	VERB
cana-4853	75	34	the	the	DET
cana-4853	75	35	recommended	recommend	VERB
cana-4853	75	36	4	4	NUM
cana-4853	75	37	×	×	NOUN
cana-4853	75	38	1	1	NUM
cana-4853	75	39	design	design	NOUN
cana-4853	75	40	,	,	PUNCT
cana-4853	75	41	figure	figure	NOUN
cana-4853	75	42	6b	6b	NOUN
cana-4853	75	43	shows	show	VERB
cana-4853	75	44	how	how	SCONJ
cana-4853	75	45	to	to	PART
cana-4853	75	46	create	create	VERB
cana-4853	75	47	a	a	DET
cana-4853	75	48	quaternary	quaternary	ADJ
cana-4853	75	49	bidirectional	bidirectional	NOUN
cana-4853	75	50	16	16	NUM
cana-4853	75	51	×	×	NOUN
cana-4853	75	52	1	1	NUM
cana-4853	75	53	multiplexer	multiplexer	NOUN
cana-4853	75	54	utilizes	utilize	VERB
cana-4853	75	55	a	a	DET
cana-4853	75	56	4×1	4×1	NUM
cana-4853	75	57	multiplexer.five	multiplexer.five	NUM
cana-4853	75	58	steady	steady	ADJ
cana-4853	75	59	inputs	input	NOUN
cana-4853	75	60	(	(	PUNCT
cana-4853	75	61	0	0	NUM
cana-4853	75	62	)	)	PUNCT
cana-4853	75	63	,	,	PUNCT
cana-4853	75	64	sixteen	sixteen	NUM
cana-4853	75	65	major	major	ADJ
cana-4853	75	66	inputs	input	NOUN
cana-4853	75	67	(	(	PUNCT
cana-4853	75	68	t0	t0	NOUN
cana-4853	75	69	to	to	ADP
cana-4853	75	70	t15	t15	PROPN
cana-4853	75	71	)	)	PUNCT
cana-4853	75	72	,	,	PUNCT
cana-4853	75	73	selectors	selector	NOUN
cana-4853	75	74	a	a	PRON
cana-4853	75	75	and	and	CCONJ
cana-4853	75	76	b	b	NOUN
cana-4853	75	77	,	,	PUNCT
cana-4853	75	78	the	the	DET
cana-4853	75	79	major	major	ADJ
cana-4853	75	80	output	output	NOUN
cana-4853	75	81	o	o	NOUN
cana-4853	75	82	,	,	PUNCT
cana-4853	75	83	and	and	CCONJ
cana-4853	75	84	trash	trash	NOUN
cana-4853	75	85	outcomes	outcome	NOUN
cana-4853	75	86	(	(	PUNCT
cana-4853	75	87	t0	t0	NOUN
cana-4853	75	88	to	to	ADP
cana-4853	75	89	t15	t15	PROPN
cana-4853	75	90	)	)	PUNCT
cana-4853	75	91	,	,	PUNCT
cana-4853	75	92	as	as	ADV
cana-4853	75	93	well	well	ADV
cana-4853	75	94	as	as	ADP
cana-4853	75	95	the	the	DET
cana-4853	75	96	main	main	ADJ
cana-4853	75	97	inputs	input	NOUN
cana-4853	75	98	(	(	PUNCT
cana-4853	75	99	t0	t0	NOUN
cana-4853	75	100	to	to	ADP
cana-4853	75	101	t15	t15	PROPN
cana-4853	75	102	)	)	PUNCT
cana-4853	75	103	make	make	VERB
cana-4853	75	104	up	up	ADP
cana-4853	75	105	the	the	DET
cana-4853	75	106	circuit	circuit	NOUN
cana-4853	75	107	.	.	PUNCT
cana-4853	76	1	with	with	ADP
cana-4853	76	2	a	a	DET
cana-4853	76	3	quantum	quantum	ADJ
cana-4853	76	4	cost	cost	NOUN
cana-4853	76	5	of	of	ADP
cana-4853	76	6	140	140	NUM
cana-4853	76	7	.	.	PUNCT
cana-4853	77	1	communications	communication	NOUN
cana-4853	77	2	on	on	ADP
cana-4853	77	3	applied	apply	VERB
cana-4853	77	4	nonlinear	nonlinear	ADJ
cana-4853	77	5	analysis	analysis	NOUN
cana-4853	77	6	issn	issn	NOUN
cana-4853	77	7	:	:	PUNCT
cana-4853	77	8	1074	1074	NUM
cana-4853	77	9	-	-	PUNCT
cana-4853	77	10	133x	133x	NUM
cana-4853	77	11	vol	vol	VERB
cana-4853	77	12	32	32	NUM
cana-4853	77	13	no	no	NOUN
cana-4853	77	14	.	.	PUNCT
cana-4853	78	1	10s	10	NOUN
cana-4853	78	2	(	(	PUNCT
cana-4853	78	3	2025	2025	NUM
cana-4853	78	4	)	)	PUNCT
cana-4853	78	5	654	654	NUM
cana-4853	78	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	78	7	however	however	ADV
cana-4853	78	8	,	,	PUNCT
cana-4853	78	9	by	by	ADP
cana-4853	78	10	removing	remove	VERB
cana-4853	78	11	unnecessary	unnecessary	ADJ
cana-4853	78	12	outputs	output	NOUN
cana-4853	78	13	(	(	PUNCT
cana-4853	78	14	t0	t0	NOUN
cana-4853	78	15	and	and	CCONJ
cana-4853	78	16	t15	t15	PROPN
cana-4853	78	17	)	)	PUNCT
cana-4853	78	18	,	,	PUNCT
cana-4853	78	19	a	a	DET
cana-4853	78	20	second	second	ADJ
cana-4853	78	21	version	version	NOUN
cana-4853	78	22	lowers	lower	VERB
cana-4853	78	23	the	the	DET
cana-4853	78	24	quantum	quantum	NOUN
cana-4853	78	25	cost	cost	NOUN
cana-4853	78	26	to	to	ADP
cana-4853	78	27	120.by	120.by	PROPN
cana-4853	78	28	employing	employ	VERB
cana-4853	78	29	eight	eight	NUM
cana-4853	78	30	quaternary	quaternary	ADJ
cana-4853	78	31	shift	shift	NOUN
cana-4853	78	32	gates	gate	NOUN
cana-4853	78	33	and	and	CCONJ
cana-4853	78	34	twenty	twenty	NUM
cana-4853	78	35	quadruple	quadruple	NOUN
cana-4853	78	36	manageable	manageable	ADJ
cana-4853	78	37	feynman	feynman	PROPN
cana-4853	78	38	gates	gates	PROPN
cana-4853	78	39	,	,	PUNCT
cana-4853	78	40	this	this	DET
cana-4853	78	41	construction	construction	NOUN
cana-4853	78	42	lowers	lower	VERB
cana-4853	78	43	quantum	quantum	NOUN
cana-4853	78	44	cost	cost	NOUN
cana-4853	78	45	and	and	CCONJ
cana-4853	78	46	produces	produce	VERB
cana-4853	78	47	a	a	DET
cana-4853	78	48	more	more	ADV
cana-4853	78	49	effective	effective	ADJ
cana-4853	78	50	multiplexer	multiplexer	NOUN
cana-4853	78	51	network	network	NOUN
cana-4853	78	52	.	.	PUNCT
cana-4853	79	1	an	an	DET
cana-4853	79	2	enhanced	enhance	VERB
cana-4853	79	3	design	design	NOUN
cana-4853	79	4	achieves	achieve	VERB
cana-4853	79	5	a	a	DET
cana-4853	79	6	lower	low	ADJ
cana-4853	79	7	quantum	quantum	NOUN
cana-4853	79	8	cost	cost	NOUN
cana-4853	79	9	of	of	ADP
cana-4853	79	10	108	108	NUM
cana-4853	79	11	,	,	PUNCT
cana-4853	79	12	which	which	PRON
cana-4853	79	13	is	be	AUX
cana-4853	79	14	much	much	ADV
cana-4853	79	15	lower	low	ADJ
cana-4853	79	16	than	than	ADP
cana-4853	79	17	the	the	DET
cana-4853	79	18	initial	initial	ADJ
cana-4853	79	19	realization	realization	NOUN
cana-4853	79	20	,	,	PUNCT
cana-4853	79	21	by	by	ADP
cana-4853	79	22	employing	employ	VERB
cana-4853	79	23	100	100	NUM
cana-4853	79	24	quaternary	quaternary	ADJ
cana-4853	79	25	muthukrishnan	muthukrishnan	ADJ
cana-4853	79	26	-	-	PUNCT
cana-4853	79	27	stroud	stroud	NOUN
cana-4853	79	28	gates	gate	NOUN
cana-4853	79	29	,	,	PUNCT
cana-4853	79	30	eight	eight	NUM
cana-4853	79	31	quaternary	quaternary	ADJ
cana-4853	79	32	shift	shift	NOUN
cana-4853	79	33	gates	gate	NOUN
cana-4853	79	34	,	,	PUNCT
cana-4853	79	35	and	and	CCONJ
cana-4853	79	36	feynman	feynman	PROPN
cana-4853	79	37	gates	gates	PROPN
cana-4853	79	38	.	.	PUNCT
cana-4853	80	1	five	five	NUM
cana-4853	80	2	constant	constant	ADJ
cana-4853	80	3	inputs	input	NOUN
cana-4853	80	4	and	and	CCONJ
cana-4853	80	5	22	22	NUM
cana-4853	80	6	trash	trash	NOUN
cana-4853	80	7	outputs	output	NOUN
cana-4853	80	8	are	be	AUX
cana-4853	80	9	maintained	maintain	VERB
cana-4853	80	10	in	in	ADP
cana-4853	80	11	both	both	DET
cana-4853	80	12	implementations	implementation	NOUN
cana-4853	80	13	.	.	PUNCT
cana-4853	81	1	a	a	DET
cana-4853	81	2	quaternary	quaternary	ADJ
cana-4853	81	3	reversible	reversible	ADJ
cana-4853	81	4	n×1	n×1	NOUN
cana-4853	81	5	multiplexer	multiplexer	NOUN
cana-4853	81	6	circuit	circuit	NOUN
cana-4853	81	7	that	that	PRON
cana-4853	81	8	is	be	AUX
cana-4853	81	9	generalized	generalize	VERB
cana-4853	81	10	,	,	PUNCT
cana-4853	81	11	which	which	PRON
cana-4853	81	12	builds	build	VERB
cana-4853	81	13	upon	upon	SCONJ
cana-4853	81	14	the	the	DET
cana-4853	81	15	original	original	ADJ
cana-4853	81	16	4×1	4×1	ADJ
cana-4853	81	17	reversible	reversible	ADJ
cana-4853	81	18	multiplexer	multiplexer	NOUN
cana-4853	81	19	architecture	architecture	NOUN
cana-4853	81	20	,	,	PUNCT
cana-4853	81	21	is	be	AUX
cana-4853	81	22	further	far	ADV
cana-4853	81	23	depicted	depict	VERB
cana-4853	81	24	in	in	ADP
cana-4853	81	25	figure	figure	NOUN
cana-4853	81	26	4	4	NUM
cana-4853	81	27	as	as	SCONJ
cana-4853	81	28	given	give	VERB
cana-4853	81	29	below	below	ADV
cana-4853	81	30	.	.	PUNCT
cana-4853	82	1	the	the	DET
cana-4853	82	2	circuit	circuit	NOUN
cana-4853	82	3	needs	need	VERB
cana-4853	82	4	m	m	NOUN
cana-4853	82	5	rows	row	NOUN
cana-4853	82	6	of	of	ADP
cana-4853	82	7	4×1	4×1	PROPN
cana-4853	82	8	multiplexer	multiplexer	NOUN
cana-4853	82	9	,	,	PUNCT
cana-4853	82	10	with	with	SCONJ
cana-4853	82	11	there	there	PRON
cana-4853	82	12	are	be	VERB
cana-4853	82	13	4	4	NUM
cana-4853	82	14	m−1	m−1	PROPN
cana-4853	82	15	multiplexers	multiplexer	NOUN
cana-4853	82	16	in	in	ADP
cana-4853	82	17	the	the	DET
cana-4853	82	18	1st	1st	ADJ
cana-4853	82	19	row	row	NOUN
cana-4853	82	20	,	,	PUNCT
cana-4853	82	21	4	4	NUM
cana-4853	82	22	m−2	m−2	NOUN
cana-4853	82	23	multiplexers	multiplexer	NOUN
cana-4853	82	24	in	in	ADP
cana-4853	82	25	the	the	DET
cana-4853	82	26	second	second	ADJ
cana-4853	82	27	row	row	NOUN
cana-4853	82	28	,	,	PUNCT
cana-4853	82	29	and	and	CCONJ
cana-4853	82	30	one	one	NUM
cana-4853	82	31	multiplexer	multiplexer	NOUN
cana-4853	82	32	in	in	ADP
cana-4853	82	33	the	the	DET
cana-4853	82	34	last	last	ADJ
cana-4853	82	35	row	row	NOUN
cana-4853	82	36	.	.	PUNCT
cana-4853	83	1	geometric	geometric	ADJ
cana-4853	83	2	series	series	NOUN
cana-4853	83	3	formulas	formula	NOUN
cana-4853	83	4	can	can	AUX
cana-4853	83	5	be	be	AUX
cana-4853	83	6	used	use	VERB
cana-4853	83	7	to	to	PART
cana-4853	83	8	calculate	calculate	VERB
cana-4853	83	9	the	the	DET
cana-4853	83	10	total	total	ADJ
cana-4853	83	11	number	number	NOUN
cana-4853	83	12	of	of	ADP
cana-4853	83	13	4×1	4×1	NOUN
cana-4853	83	14	multiplexers	multiplexer	NOUN
cana-4853	83	15	utilized	utilize	VERB
cana-4853	83	16	to	to	ADP
cana-4853	83	17	a	a	DET
cana-4853	83	18	build	build	NOUN
cana-4853	83	19	the	the	DET
cana-4853	83	20	n×1	n×1	NOUN
cana-4853	83	21	multiplexer	multiplexer	NOUN
cana-4853	83	22	,	,	PUNCT
cana-4853	83	23	as	as	SCONJ
cana-4853	83	24	represented	represent	VERB
cana-4853	83	25	by	by	ADP
cana-4853	83	26	y	y	PROPN
cana-4853	83	27	in	in	ADP
cana-4853	83	28	equation	equation	NOUN
cana-4853	83	29	(	(	PUNCT
cana-4853	83	30	2	2	NUM
cana-4853	83	31	)	)	PUNCT
cana-4853	83	32	.	.	PUNCT
cana-4853	84	1	(	(	PUNCT
cana-4853	84	2	a	a	X
cana-4853	84	3	)	)	PUNCT
cana-4853	84	4	(	(	PUNCT
cana-4853	84	5	b	b	X
cana-4853	84	6	)	)	PUNCT
cana-4853	84	7	figure	figure	NOUN
cana-4853	84	8	4	4	NUM
cana-4853	84	9	.	.	PUNCT
cana-4853	85	1	the	the	DET
cana-4853	85	2	suggested	suggest	VERB
cana-4853	85	3	circuit	circuit	NOUN
cana-4853	85	4	for	for	ADP
cana-4853	85	5	a	a	DET
cana-4853	85	6	quaternary	quaternary	ADJ
cana-4853	85	7	bidirectional	bidirectional	NOUN
cana-4853	85	8	16	16	NUM
cana-4853	85	9	×	×	NOUN
cana-4853	85	10	1	1	NUM
cana-4853	85	11	mux	mux	NOUN
cana-4853	85	12	.	.	PUNCT
cana-4853	86	1	a	a	X
cana-4853	86	2	)	)	PUNCT
cana-4853	86	3	the	the	DET
cana-4853	86	4	rational	rational	ADJ
cana-4853	86	5	framework	framework	NOUN
cana-4853	86	6	b	b	X
cana-4853	86	7	)	)	PUNCT
cana-4853	86	8	the	the	DET
cana-4853	86	9	optimal	optimal	ADJ
cana-4853	86	10	implementation	implementation	NOUN
cana-4853	86	11	.	.	PUNCT
cana-4853	87	1	𝑌	𝑌	PROPN
cana-4853	87	2	=	=	PUNCT
cana-4853	87	3	∑	∑	PUNCT
cana-4853	87	4	4𝑖	4𝑖	NOUN
cana-4853	87	5	=	=	SYM
cana-4853	87	6	4𝑚−1	4𝑚−1	NUM
cana-4853	87	7	3	3	NUM
cana-4853	87	8	=	=	SYM
cana-4853	87	9	𝑛−1	𝑛−1	NUM
cana-4853	87	10	3	3	NUM
cana-4853	87	11	𝑚−1	𝑚−1	PROPN
cana-4853	87	12	𝑖=0	𝑖=0	PROPN
cana-4853	87	13	…	…	PUNCT
cana-4853	87	14	.	.	PUNCT
cana-4853	88	1	(	(	PUNCT
cana-4853	88	2	2	2	X
cana-4853	88	3	)	)	PUNCT
cana-4853	88	4	the	the	DET
cana-4853	88	5	formula	formula	NOUN
cana-4853	88	6	for	for	ADP
cana-4853	88	7	the	the	DET
cana-4853	88	8	quantum	quantum	ADJ
cana-4853	88	9	value	value	NOUN
cana-4853	88	10	of	of	ADP
cana-4853	88	11	a	a	DET
cana-4853	88	12	quaternary	quaternary	ADJ
cana-4853	88	13	bidirectional	bidirectional	NOUN
cana-4853	88	14	n×1	n×1	NOUN
cana-4853	88	15	multiplexer	multiplexer	NOUN
cana-4853	88	16	is	be	AUX
cana-4853	88	17	24×(𝑛−1)/3.it	24×(𝑛−1)/3.it	NUM
cana-4853	88	18	generates	generate	NOUN
cana-4853	88	19	(	(	PUNCT
cana-4853	88	20	3𝑚+4𝑛−4	3𝑚+4𝑛−4	NUM
cana-4853	88	21	)	)	PUNCT
cana-4853	88	22	/3	/3	VERB
cana-4853	89	1	trash	trash	NOUN
cana-4853	89	2	outputs	output	NOUN
cana-4853	89	3	and	and	CCONJ
cana-4853	89	4	requires	require	VERB
cana-4853	89	5	(	(	PUNCT
cana-4853	89	6	𝑛	𝑛	DET
cana-4853	89	7	−1)/3	−1)/3	PROPN
cana-4853	89	8	.the	.the	DET
cana-4853	89	9	previously	previously	ADV
cana-4853	89	10	described	describe	VERB
cana-4853	89	11	method	method	NOUN
cana-4853	89	12	can	can	AUX
cana-4853	89	13	communications	communication	NOUN
cana-4853	89	14	on	on	ADP
cana-4853	89	15	applied	apply	VERB
cana-4853	89	16	nonlinear	nonlinear	ADJ
cana-4853	89	17	analysis	analysis	NOUN
cana-4853	89	18	issn	issn	NOUN
cana-4853	89	19	:	:	PUNCT
cana-4853	89	20	1074	1074	NUM
cana-4853	89	21	-	-	PUNCT
cana-4853	89	22	133x	133x	NUM
cana-4853	89	23	vol	vol	VERB
cana-4853	89	24	32	32	NUM
cana-4853	89	25	no	no	NOUN
cana-4853	89	26	.	.	PUNCT
cana-4853	90	1	10s	10	NOUN
cana-4853	90	2	(	(	PUNCT
cana-4853	90	3	2025	2025	NUM
cana-4853	90	4	)	)	PUNCT
cana-4853	90	5	655	655	NUM
cana-4853	90	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	90	7	be	be	AUX
cana-4853	90	8	used	use	VERB
cana-4853	90	9	to	to	PART
cana-4853	90	10	merge	merge	VERB
cana-4853	90	11	the	the	DET
cana-4853	90	12	first	first	ADJ
cana-4853	90	13	quant	quant	ADJ
cana-4853	90	14	-	-	PUNCT
cana-4853	90	15	shift	shift	NOUN
cana-4853	90	16	gate	gate	NOUN
cana-4853	90	17	on	on	ADP
cana-4853	90	18	every	every	DET
cana-4853	90	19	row	row	NOUN
cana-4853	90	20	in	in	ADP
cana-4853	90	21	order	order	NOUN
cana-4853	90	22	to	to	PART
cana-4853	90	23	optimize	optimize	VERB
cana-4853	90	24	the	the	DET
cana-4853	90	25	architecture	architecture	NOUN
cana-4853	90	26	.	.	PUNCT
cana-4853	91	1	this	this	DET
cana-4853	91	2	results	result	VERB
cana-4853	91	3	in	in	ADP
cana-4853	91	4	four	four	NUM
cana-4853	91	5	1	1	NUM
cana-4853	91	6	-	-	PUNCT
cana-4853	91	7	qudit	qudit	NOUN
cana-4853	91	8	shift	shift	NOUN
cana-4853	91	9	gates	gate	NOUN
cana-4853	91	10	per	per	ADP
cana-4853	91	11	row	row	NOUN
cana-4853	91	12	.	.	PUNCT
cana-4853	92	1	furthermore	furthermore	ADV
cana-4853	92	2	,	,	PUNCT
cana-4853	92	3	there	there	PRON
cana-4853	92	4	are	be	VERB
cana-4853	92	5	4m−1	4m−1	NUM
cana-4853	92	6	manageable	manageable	ADJ
cana-4853	92	7	feynman	feynman	PROPN
cana-4853	92	8	gates	gate	NOUN
cana-4853	92	9	in	in	ADP
cana-4853	92	10	the	the	DET
cana-4853	92	11	first	first	ADJ
cana-4853	92	12	row	row	NOUN
cana-4853	92	13	and	and	CCONJ
cana-4853	92	14	4	4	NUM
cana-4853	92	15	m−2	m−2	NUM
cana-4853	92	16	controlled	control	VERB
cana-4853	92	17	feynman	feynman	NOUN
cana-4853	92	18	gates	gate	NOUN
cana-4853	92	19	in	in	ADP
cana-4853	92	20	the	the	DET
cana-4853	92	21	second	second	ADJ
cana-4853	92	22	row	row	NOUN
cana-4853	92	23	.	.	PUNCT
cana-4853	93	1	(	(	PUNCT
cana-4853	93	2	a	a	X
cana-4853	93	3	)	)	PUNCT
cana-4853	93	4	figure	figure	NOUN
cana-4853	93	5	5	5	NUM
cana-4853	93	6	.	.	PUNCT
cana-4853	94	1	the	the	DET
cana-4853	94	2	suggested	suggest	VERB
cana-4853	94	3	circuit	circuit	NOUN
cana-4853	94	4	for	for	ADP
cana-4853	94	5	a	a	DET
cana-4853	94	6	quaternary	quaternary	ADJ
cana-4853	94	7	bidirectional	bidirectional	NOUN
cana-4853	94	8	1×4	1×4	NUM
cana-4853	94	9	demultiplexer	demultiplexer	NOUN
cana-4853	94	10	.	.	PUNCT
cana-4853	95	1	a	a	DET
cana-4853	95	2	)	)	PUNCT
cana-4853	95	3	the	the	DET
cana-4853	95	4	sign	sign	NOUN
cana-4853	95	5	;	;	PUNCT
cana-4853	95	6	b)the	b)the	DET
cana-4853	95	7	implementation	implementation	NOUN
cana-4853	95	8	with	with	ADP
cana-4853	95	9	shift	shift	NOUN
cana-4853	95	10	gates	gate	NOUN
cana-4853	95	11	and	and	CCONJ
cana-4853	95	12	m	m	NOUN
cana-4853	95	13	-	-	PUNCT
cana-4853	95	14	s	s	VERB
cana-4853	95	15	the	the	DET
cana-4853	95	16	improved	improved	ADJ
cana-4853	95	17	circuit	circuit	NOUN
cana-4853	95	18	's	's	PART
cana-4853	95	19	overall	overall	ADJ
cana-4853	95	20	quantum	quantum	ADJ
cana-4853	95	21	cost	cost	NOUN
cana-4853	95	22	,	,	PUNCT
cana-4853	95	23	using	use	VERB
cana-4853	95	24	the	the	DET
cana-4853	95	25	2nd	2nd	ADJ
cana-4853	95	26	version	version	NOUN
cana-4853	95	27	of	of	ADP
cana-4853	95	28	the	the	DET
cana-4853	95	29	controlled	control	VERB
cana-4853	95	30	feynman	feynman	PROPN
cana-4853	95	31	gate	gate	PROPN
cana-4853	95	32	,	,	PUNCT
cana-4853	95	33	is	be	AUX
cana-4853	95	34	20×(𝑛−1)/3	20×(𝑛−1)/3	NUM
cana-4853	95	35	+	+	NOUN
cana-4853	95	36	4	4	NUM
cana-4853	95	37	.	.	PUNCT
cana-4853	95	38	b.	b.	PROPN
cana-4853	95	39	proposed	propose	VERB
cana-4853	95	40	quaternary	quaternary	ADJ
cana-4853	95	41	reversible	reversible	ADJ
cana-4853	95	42	demultiplexer	demultiplexer	NOUN
cana-4853	95	43	circuit	circuit	NOUN
cana-4853	95	44	a	a	DET
cana-4853	95	45	1×16	1×16	NUM
cana-4853	95	46	demultiplexer	demultiplexer	NOUN
cana-4853	95	47	can	can	AUX
cana-4853	95	48	be	be	AUX
cana-4853	95	49	designed	design	VERB
cana-4853	95	50	by	by	ADP
cana-4853	95	51	extending	extend	VERB
cana-4853	95	52	our	our	PRON
cana-4853	95	53	suggested	suggest	VERB
cana-4853	95	54	quaternary	quaternary	ADJ
cana-4853	95	55	1×4	1×4	NUM
cana-4853	95	56	demultiplexer	demultiplexer	NOUN
cana-4853	95	57	.	.	PUNCT
cana-4853	96	1	two	two	NUM
cana-4853	96	2	selectors	selector	NOUN
cana-4853	96	3	,	,	PUNCT
cana-4853	96	4	sixteen	sixteen	NUM
cana-4853	96	5	outputs	output	NOUN
cana-4853	96	6	,	,	PUNCT
cana-4853	96	7	and	and	CCONJ
cana-4853	96	8	a	a	DET
cana-4853	96	9	single	single	ADJ
cana-4853	96	10	input	input	NOUN
cana-4853	96	11	are	be	AUX
cana-4853	96	12	needed	need	VERB
cana-4853	96	13	for	for	ADP
cana-4853	96	14	this	this	DET
cana-4853	96	15	circuit	circuit	NOUN
cana-4853	96	16	.	.	PUNCT
cana-4853	97	1	as	as	SCONJ
cana-4853	97	2	shown	show	VERB
cana-4853	97	3	in	in	ADP
cana-4853	97	4	figure	figure	NOUN
cana-4853	97	5	5a	5a	NUM
cana-4853	97	6	,	,	PUNCT
cana-4853	97	7	the	the	DET
cana-4853	97	8	suggested	suggest	VERB
cana-4853	97	9	quaternary	quaternary	ADJ
cana-4853	97	10	reversible	reversible	ADJ
cana-4853	97	11	1×16	1×16	NUM
cana-4853	97	12	demultiplexer	demultiplexer	NOUN
cana-4853	97	13	is	be	AUX
cana-4853	97	14	constructed	construct	VERB
cana-4853	97	15	utilizing	utilize	VERB
cana-4853	97	16	1×4	1×4	NUM
cana-4853	97	17	demultiplexers	demultiplexer	NOUN
cana-4853	97	18	.	.	PUNCT
cana-4853	98	1	five	five	NUM
cana-4853	98	2	quaternary	quaternary	ADJ
cana-4853	98	3	1x4	1x4	NUM
cana-4853	98	4	demultiplexers	demultiplexer	NOUN
cana-4853	98	5	are	be	AUX
cana-4853	98	6	needed	need	VERB
cana-4853	98	7	for	for	ADP
cana-4853	98	8	this	this	DET
cana-4853	98	9	setup	setup	NOUN
cana-4853	98	10	.	.	PUNCT
cana-4853	99	1	the	the	DET
cana-4853	99	2	quaternary	quaternary	ADJ
cana-4853	99	3	reversible	reversible	ADJ
cana-4853	99	4	1×4	1×4	NUM
cana-4853	99	5	demultiplexer	demultiplexer	NOUN
cana-4853	99	6	circuits	circuit	NOUN
cana-4853	99	7	are	be	AUX
cana-4853	99	8	indicated	indicate	VERB
cana-4853	99	9	by	by	ADP
cana-4853	99	10	the	the	DET
cana-4853	99	11	red	red	ADJ
cana-4853	99	12	boxes	box	NOUN
cana-4853	99	13	.	.	PUNCT
cana-4853	100	1	twenty	twenty	NUM
cana-4853	100	2	constant	constant	ADJ
cana-4853	100	3	inputs	input	NOUN
cana-4853	100	4	set	set	VERB
cana-4853	100	5	to	to	ADP
cana-4853	100	6	0	0	NUM
cana-4853	100	7	are	be	AUX
cana-4853	100	8	needed	need	VERB
cana-4853	100	9	for	for	ADP
cana-4853	100	10	the	the	DET
cana-4853	100	11	principal	principal	ADJ
cana-4853	100	12	input	input	NOUN
cana-4853	100	13	,	,	PUNCT
cana-4853	100	14	i.	i.	NOUN
cana-4853	100	15	the	the	DET
cana-4853	100	16	output	output	NOUN
cana-4853	100	17	is	be	AUX
cana-4853	100	18	determined	determine	VERB
cana-4853	100	19	by	by	ADP
cana-4853	100	20	the	the	DET
cana-4853	100	21	selectors	selector	NOUN
cana-4853	100	22	x	x	PUNCT
cana-4853	100	23	and	and	CCONJ
cana-4853	100	24	p	p	X
cana-4853	100	25	,	,	PUNCT
cana-4853	100	26	which	which	PRON
cana-4853	100	27	route	route	VERB
cana-4853	100	28	the	the	DET
cana-4853	100	29	signal	signal	NOUN
cana-4853	100	30	to	to	ADP
cana-4853	100	31	one	one	NUM
cana-4853	100	32	of	of	ADP
cana-4853	100	33	the	the	DET
cana-4853	100	34	outputs	output	NOUN
cana-4853	100	35	through	through	ADP
cana-4853	100	36	o15	o15	NOUN
cana-4853	100	37	.	.	PUNCT
cana-4853	101	1	the	the	DET
cana-4853	101	2	circuit	circuit	NOUN
cana-4853	101	3	generates	generate	VERB
cana-4853	101	4	seven	seven	NUM
cana-4853	101	5	garbage	garbage	NOUN
cana-4853	101	6	outputs	output	NOUN
cana-4853	101	7	,	,	PUNCT
cana-4853	101	8	designated	designate	VERB
cana-4853	101	9	"	"	PUNCT
cana-4853	101	10	y1	y1	NOUN
cana-4853	101	11	,	,	PUNCT
cana-4853	101	12	"	"	PUNCT
cana-4853	101	13	"	"	PUNCT
cana-4853	101	14	y2	y2	PROPN
cana-4853	101	15	,	,	PUNCT
cana-4853	101	16	"	"	PUNCT
cana-4853	101	17	"	"	PUNCT
cana-4853	101	18	i	i	PRON
cana-4853	101	19	,	,	PUNCT
cana-4853	101	20	"	"	PUNCT
cana-4853	101	21	and	and	CCONJ
cana-4853	101	22	"	"	PUNCT
cana-4853	101	23	s0	s0	NOUN
cana-4853	101	24	"	"	PUNCT
cana-4853	101	25	to	to	ADP
cana-4853	101	26	"	"	PUNCT
cana-4853	101	27	s3	s3	PROPN
cana-4853	101	28	,	,	PUNCT
cana-4853	101	29	"	"	PUNCT
cana-4853	101	30	where	where	SCONJ
cana-4853	101	31	"	"	PUNCT
cana-4853	101	32	y1	y1	INTJ
cana-4853	101	33	"	"	PUNCT
cana-4853	101	34	and	and	CCONJ
cana-4853	101	35	"	"	PUNCT
cana-4853	101	36	y2	y2	INTJ
cana-4853	101	37	"	"	PUNCT
cana-4853	101	38	respectively	respectively	ADV
cana-4853	101	39	stand	stand	VERB
cana-4853	101	40	for	for	ADP
cana-4853	101	41	the	the	DET
cana-4853	101	42	selectors	selector	NOUN
cana-4853	101	43	"	"	PUNCT
cana-4853	101	44	x	x	NOUN
cana-4853	101	45	"	"	PUNCT
cana-4853	101	46	and	and	CCONJ
cana-4853	101	47	"	"	PUNCT
cana-4853	101	48	p.	p.	NOUN
cana-4853	101	49	"	"	PUNCT
cana-4853	101	50	.	.	PUNCT
cana-4853	102	1	twenty	twenty	NUM
cana-4853	102	2	shift	shift	NOUN
cana-4853	102	3	gates	gate	NOUN
cana-4853	102	4	in	in	ADP
cana-4853	102	5	the	the	DET
cana-4853	102	6	quaternary	quaternary	ADJ
cana-4853	102	7	and	and	CCONJ
cana-4853	102	8	100	100	NUM
cana-4853	102	9	quaternary	quaternary	ADJ
cana-4853	102	10	m	m	PROPN
cana-4853	102	11	-	-	PUNCT
cana-4853	102	12	s	s	PART
cana-4853	102	13	gates	gate	NOUN
cana-4853	102	14	make	make	VERB
cana-4853	102	15	up	up	ADP
cana-4853	102	16	the	the	DET
cana-4853	102	17	final	final	ADJ
cana-4853	102	18	design	design	NOUN
cana-4853	102	19	,	,	PUNCT
cana-4853	102	20	which	which	PRON
cana-4853	102	21	has	have	VERB
cana-4853	102	22	a	a	DET
cana-4853	102	23	quantum	quantum	ADJ
cana-4853	102	24	cost	cost	NOUN
cana-4853	102	25	of	of	ADP
cana-4853	102	26	120	120	NUM
cana-4853	102	27	.	.	PUNCT
cana-4853	103	1	communications	communication	NOUN
cana-4853	103	2	on	on	ADP
cana-4853	103	3	applied	apply	VERB
cana-4853	103	4	nonlinear	nonlinear	ADJ
cana-4853	103	5	analysis	analysis	NOUN
cana-4853	103	6	issn	issn	NOUN
cana-4853	103	7	:	:	PUNCT
cana-4853	103	8	1074	1074	NUM
cana-4853	103	9	-	-	PUNCT
cana-4853	103	10	133x	133x	NUM
cana-4853	103	11	vol	vol	VERB
cana-4853	103	12	32	32	NUM
cana-4853	103	13	no	no	NOUN
cana-4853	103	14	.	.	PUNCT
cana-4853	104	1	10s	10	NOUN
cana-4853	104	2	(	(	PUNCT
cana-4853	104	3	2025	2025	NUM
cana-4853	104	4	)	)	PUNCT
cana-4853	104	5	656	656	NUM
cana-4853	104	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	104	7	a	a	DET
cana-4853	104	8	more	more	ADV
cana-4853	104	9	efficient	efficient	ADJ
cana-4853	104	10	quaternary	quaternary	ADJ
cana-4853	104	11	bidirectional	bidirectional	NOUN
cana-4853	104	12	1×16	1×16	NUM
cana-4853	104	13	demultiplexer	demultiplexer	NOUN
cana-4853	104	14	with	with	ADP
cana-4853	104	15	a	a	DET
cana-4853	104	16	lesser	less	ADJ
cana-4853	104	17	quantum	quantum	NOUN
cana-4853	104	18	cost	cost	NOUN
cana-4853	104	19	is	be	AUX
cana-4853	104	20	created	create	VERB
cana-4853	104	21	by	by	ADP
cana-4853	104	22	implementing	implement	VERB
cana-4853	104	23	additional	additional	ADJ
cana-4853	104	24	gate	gate	NOUN
cana-4853	104	25	modifications	modification	NOUN
cana-4853	104	26	.	.	PUNCT
cana-4853	105	1	eight	eight	NUM
cana-4853	105	2	one	one	NUM
cana-4853	105	3	-	-	PUNCT
cana-4853	105	4	qudit	qudit	NOUN
cana-4853	105	5	shift	shift	NOUN
cana-4853	105	6	gates	gate	NOUN
cana-4853	105	7	and	and	CCONJ
cana-4853	105	8	twenty	twenty	NUM
cana-4853	105	9	quaternary	quaternary	PROPN
cana-4853	105	10	controlled	control	VERB
cana-4853	105	11	feynman	feynman	PROPN
cana-4853	105	12	gates	gate	NOUN
cana-4853	105	13	are	be	AUX
cana-4853	105	14	included	include	VERB
cana-4853	105	15	in	in	ADP
cana-4853	105	16	the	the	DET
cana-4853	105	17	modified	modify	VERB
cana-4853	105	18	circuit	circuit	NOUN
cana-4853	105	19	,	,	PUNCT
cana-4853	105	20	as	as	SCONJ
cana-4853	105	21	seen	see	VERB
cana-4853	105	22	in	in	ADP
cana-4853	105	23	figure	figure	NOUN
cana-4853	105	24	9c	9c	NUM
cana-4853	105	25	.	.	PUNCT
cana-4853	106	1	single	single	ADJ
cana-4853	106	2	input	input	NOUN
cana-4853	106	3	,	,	PUNCT
cana-4853	106	4	m	m	VERB
cana-4853	106	5	selectors	selector	NOUN
cana-4853	106	6	lines	line	NOUN
cana-4853	106	7	,	,	PUNCT
cana-4853	106	8	and	and	CCONJ
cana-4853	106	9	n	n	CCONJ
cana-4853	106	10	=	=	SYM
cana-4853	106	11	4ᵐ	4ᵐ	NOUN
cana-4853	106	12	lines	line	NOUN
cana-4853	106	13	of	of	ADP
cana-4853	106	14	output	output	NOUN
cana-4853	106	15	make	make	VERB
cana-4853	106	16	up	up	ADP
cana-4853	106	17	this	this	DET
cana-4853	106	18	circuit	circuit	NOUN
cana-4853	106	19	.	.	PUNCT
cana-4853	107	1	to	to	PART
cana-4853	107	2	build	build	VERB
cana-4853	107	3	the	the	DET
cana-4853	107	4	circuit	circuit	NOUN
cana-4853	107	5	,	,	PUNCT
cana-4853	107	6	m	m	VERB
cana-4853	107	7	rows	row	NOUN
cana-4853	107	8	of	of	ADP
cana-4853	107	9	1×4	1×4	NUM
cana-4853	107	10	demultiplexers	demultiplexer	NOUN
cana-4853	107	11	are	be	AUX
cana-4853	107	12	typically	typically	ADV
cana-4853	107	13	required	require	VERB
cana-4853	107	14	.	.	PUNCT
cana-4853	108	1	demultiplexers	demultiplexer	NOUN
cana-4853	108	2	are	be	AUX
cana-4853	108	3	arranged	arrange	VERB
cana-4853	108	4	as	as	SCONJ
cana-4853	108	5	follows	follow	VERB
cana-4853	108	6	:	:	PUNCT
cana-4853	108	7	one	one	NUM
cana-4853	108	8	in	in	ADP
cana-4853	108	9	the	the	DET
cana-4853	108	10	first	first	ADJ
cana-4853	108	11	row	row	NOUN
cana-4853	108	12	,	,	PUNCT
cana-4853	108	13	four	four	NUM
cana-4853	108	14	in	in	ADP
cana-4853	108	15	the	the	DET
cana-4853	108	16	second	second	ADJ
cana-4853	108	17	,	,	PUNCT
cana-4853	108	18	and	and	CCONJ
cana-4853	108	19	four	four	NUM
cana-4853	108	20	in	in	ADP
cana-4853	108	21	the	the	DET
cana-4853	108	22	last	last	NOUN
cana-4853	108	23	.	.	PUNCT
cana-4853	109	1	the	the	DET
cana-4853	109	2	necessary	necessary	ADJ
cana-4853	109	3	number	number	NOUN
cana-4853	109	4	of	of	ADP
cana-4853	109	5	demultiplexers	demultiplexer	NOUN
cana-4853	109	6	,	,	PUNCT
cana-4853	109	7	denoted	denote	VERB
cana-4853	109	8	as	as	ADP
cana-4853	109	9	q	q	NOUN
cana-4853	109	10	,	,	PUNCT
cana-4853	109	11	can	can	AUX
cana-4853	109	12	be	be	AUX
cana-4853	109	13	calculated	calculate	VERB
cana-4853	109	14	by	by	ADP
cana-4853	109	15	using	use	VERB
cana-4853	109	16	equation	equation	NOUN
cana-4853	109	17	(	(	PUNCT
cana-4853	109	18	3	3	NUM
cana-4853	109	19	)	)	PUNCT
cana-4853	109	20	.	.	PUNCT
cana-4853	110	1	the	the	DET
cana-4853	110	2	recommended	recommend	VERB
cana-4853	110	3	quaternary	quaternary	ADJ
cana-4853	110	4	reversible	reversible	ADJ
cana-4853	110	5	1×n	1×n	ADJ
cana-4853	110	6	demultiplexer	demultiplexer	NOUN
cana-4853	110	7	network	network	NOUN
cana-4853	110	8	gives	give	VERB
cana-4853	110	9	(	(	PUNCT
cana-4853	110	10	n+3m−1)/3	n+3m−1)/3	INTJ
cana-4853	110	11	trash	trash	VERB
cana-4853	110	12	outcomes	outcome	NOUN
cana-4853	110	13	and	and	CCONJ
cana-4853	110	14	needs	need	VERB
cana-4853	110	15	a	a	DET
cana-4853	110	16	total	total	NOUN
cana-4853	110	17	of	of	ADP
cana-4853	110	18	4((n−1)/3	4((n−1)/3	NUM
cana-4853	110	19	)	)	PUNCT
cana-4853	110	20	constant	constant	ADJ
cana-4853	110	21	inputs	input	NOUN
cana-4853	110	22	.	.	PUNCT
cana-4853	111	1	this	this	DET
cana-4853	111	2	circuit	circuit	NOUN
cana-4853	111	3	's	's	PART
cana-4853	111	4	quantum	quantum	NOUN
cana-4853	111	5	cost	cost	NOUN
cana-4853	111	6	can	can	AUX
cana-4853	111	7	be	be	AUX
cana-4853	111	8	computed	compute	VERB
cana-4853	111	9	as	as	ADP
cana-4853	111	10	24((n−1)/3	24((n−1)/3	NUM
cana-4853	111	11	)	)	PUNCT
cana-4853	111	12	.	.	PUNCT
cana-4853	112	1	the	the	DET
cana-4853	112	2	proposed	propose	VERB
cana-4853	112	3	design	design	NOUN
cana-4853	112	4	surpasses	surpass	VERB
cana-4853	112	5	the	the	DET
cana-4853	112	6	existing	exist	VERB
cana-4853	112	7	design	design	NOUN
cana-4853	112	8	mentioned	mention	VERB
cana-4853	112	9	in	in	ADP
cana-4853	112	10	[	[	X
cana-4853	112	11	23	23	NUM
cana-4853	112	12	]	]	PUNCT
cana-4853	112	13	since	since	SCONJ
cana-4853	112	14	its	its	PRON
cana-4853	112	15	values	value	NOUN
cana-4853	112	16	for	for	ADP
cana-4853	112	17	this	this	DET
cana-4853	112	18	parameter	parameter	NOUN
cana-4853	112	19	.	.	PUNCT
cana-4853	113	1	𝑄	𝑄	PRON
cana-4853	113	2	=	=	PUNCT
cana-4853	113	3	∑	∑	PUNCT
cana-4853	113	4	4𝑖	4𝑖	NOUN
cana-4853	113	5	=	=	SYM
cana-4853	113	6	4𝑚−1	4𝑚−1	NUM
cana-4853	113	7	3	3	NUM
cana-4853	113	8	=	=	SYM
cana-4853	113	9	𝑛−1	𝑛−1	NUM
cana-4853	113	10	3	3	NUM
cana-4853	113	11	𝑚−1	𝑚−1	PROPN
cana-4853	113	12	𝑖=0	𝑖=0	PROPN
cana-4853	113	13	(	(	PUNCT
cana-4853	113	14	3	3	NUM
cana-4853	113	15	)	)	PUNCT
cana-4853	113	16	4	4	NUM
cana-4853	113	17	.	.	NOUN
cana-4853	113	18	results	result	NOUN
cana-4853	113	19	and	and	CCONJ
cana-4853	113	20	evaluations	evaluation	VERB
cana-4853	113	21	the	the	DET
cana-4853	113	22	effectiveness	effectiveness	NOUN
cana-4853	113	23	of	of	ADP
cana-4853	113	24	our	our	PRON
cana-4853	113	25	suggested	suggest	VERB
cana-4853	113	26	quaternary	quaternary	ADJ
cana-4853	113	27	bidirectional	bidirectional	ADJ
cana-4853	113	28	multiplexer	multiplexer	NOUN
cana-4853	113	29	and	and	CCONJ
cana-4853	113	30	demultiplexer	demultiplexer	NOUN
cana-4853	113	31	circuits	circuit	NOUN
cana-4853	113	32	is	be	AUX
cana-4853	113	33	assessed	assess	VERB
cana-4853	113	34	in	in	ADP
cana-4853	113	35	this	this	DET
cana-4853	113	36	section	section	NOUN
cana-4853	113	37	by	by	ADP
cana-4853	113	38	contrasting	contrast	VERB
cana-4853	113	39	them	they	PRON
cana-4853	113	40	with	with	ADP
cana-4853	113	41	those	those	PRON
cana-4853	113	42	of	of	ADP
cana-4853	113	43	previous	previous	ADJ
cana-4853	113	44	designs	design	NOUN
cana-4853	113	45	in	in	ADP
cana-4853	113	46	[	[	X
cana-4853	113	47	17	17	NUM
cana-4853	113	48	]	]	PUNCT
cana-4853	113	49	,	,	PUNCT
cana-4853	114	1	[	[	X
cana-4853	114	2	19	19	NUM
cana-4853	114	3	]	]	PUNCT
cana-4853	114	4	,	,	PUNCT
cana-4853	114	5	and	and	CCONJ
cana-4853	114	6	[	[	X
cana-4853	114	7	23	23	NUM
cana-4853	114	8	]	]	PUNCT
cana-4853	114	9	.	.	PUNCT
cana-4853	114	10	quantum	quantum	ADJ
cana-4853	114	11	cost	cost	NOUN
cana-4853	114	12	,	,	PUNCT
cana-4853	114	13	unwanted	unwanted	ADJ
cana-4853	114	14	outputs	output	NOUN
cana-4853	114	15	,	,	PUNCT
cana-4853	114	16	and	and	CCONJ
cana-4853	114	17	stable	stable	ADJ
cana-4853	114	18	inputs	input	NOUN
cana-4853	114	19	are	be	AUX
cana-4853	114	20	important	important	ADJ
cana-4853	114	21	performance	performance	NOUN
cana-4853	114	22	parameters	parameter	NOUN
cana-4853	114	23	that	that	PRON
cana-4853	114	24	are	be	AUX
cana-4853	114	25	essential	essential	ADJ
cana-4853	114	26	to	to	ADP
cana-4853	114	27	the	the	DET
cana-4853	114	28	design	design	NOUN
cana-4853	114	29	of	of	ADP
cana-4853	114	30	reversible	reversible	ADJ
cana-4853	114	31	circuits	circuit	NOUN
cana-4853	114	32	.	.	PUNCT
cana-4853	115	1	higher	high	ADJ
cana-4853	115	2	efficiency	efficiency	NOUN
cana-4853	115	3	is	be	AUX
cana-4853	115	4	indicated	indicate	VERB
cana-4853	115	5	by	by	ADP
cana-4853	115	6	fewer	few	ADJ
cana-4853	115	7	values	value	NOUN
cana-4853	115	8	in	in	ADP
cana-4853	115	9	these	these	DET
cana-4853	115	10	metrics	metric	NOUN
cana-4853	115	11	.	.	PUNCT
cana-4853	116	1	both	both	PRON
cana-4853	116	2	suggested	suggest	VERB
cana-4853	116	3	methods	method	NOUN
cana-4853	116	4	accomplish	accomplish	VERB
cana-4853	116	5	comparable	comparable	ADJ
cana-4853	116	6	functionality	functionality	NOUN
cana-4853	116	7	for	for	ADP
cana-4853	116	8	the	the	DET
cana-4853	116	9	quaternary	quaternary	ADJ
cana-4853	116	10	reversible	reversible	ADJ
cana-4853	116	11	4x1	4x1	NUM
cana-4853	116	12	multiplexer	multiplexer	NOUN
cana-4853	116	13	,	,	PUNCT
cana-4853	116	14	however	however	ADV
cana-4853	116	15	one	one	PRON
cana-4853	116	16	shows	show	VERB
cana-4853	116	17	notable	notable	ADJ
cana-4853	116	18	gains	gain	NOUN
cana-4853	116	19	over	over	ADP
cana-4853	116	20	previous	previous	ADJ
cana-4853	116	21	designs	design	NOUN
cana-4853	116	22	in	in	ADP
cana-4853	116	23	terms	term	NOUN
cana-4853	116	24	of	of	ADP
cana-4853	116	25	constant	constant	ADJ
cana-4853	116	26	inputs	input	NOUN
cana-4853	116	27	,	,	PUNCT
cana-4853	116	28	garbage	garbage	NOUN
cana-4853	116	29	outputs	output	NOUN
cana-4853	116	30	,	,	PUNCT
cana-4853	116	31	and	and	CCONJ
cana-4853	116	32	quantum	quantum	ADJ
cana-4853	116	33	cost	cost	NOUN
cana-4853	116	34	.	.	PUNCT
cana-4853	117	1	this	this	PRON
cana-4853	117	2	implies	imply	VERB
cana-4853	117	3	that	that	SCONJ
cana-4853	117	4	compared	compare	VERB
cana-4853	117	5	to	to	ADP
cana-4853	117	6	its	its	PRON
cana-4853	117	7	competitors	competitor	NOUN
cana-4853	117	8	,	,	PUNCT
cana-4853	117	9	our	our	PRON
cana-4853	117	10	suggested	suggest	VERB
cana-4853	117	11	16x1	16x1	NUM
cana-4853	117	12	multiplexer	multiplexer	NOUN
cana-4853	117	13	is	be	AUX
cana-4853	117	14	more	more	ADV
cana-4853	117	15	efficient	efficient	ADJ
cana-4853	117	16	.	.	PUNCT
cana-4853	118	1	quaternary	quaternary	ADJ
cana-4853	118	2	reversible	reversible	ADJ
cana-4853	118	3	1x4	1x4	NUM
cana-4853	118	4	demultiplexer	demultiplexer	NOUN
cana-4853	118	5	is	be	AUX
cana-4853	118	6	compared	compare	VERB
cana-4853	118	7	to	to	ADP
cana-4853	118	8	the	the	DET
cana-4853	118	9	design	design	NOUN
cana-4853	118	10	in	in	ADP
cana-4853	118	11	[	[	X
cana-4853	118	12	23	23	NUM
cana-4853	118	13	]	]	PUNCT
cana-4853	118	14	in	in	ADP
cana-4853	118	15	table	table	NOUN
cana-4853	118	16	2	2	NUM
cana-4853	118	17	.	.	PUNCT
cana-4853	119	1	our	our	PRON
cana-4853	119	2	approach	approach	NOUN
cana-4853	119	3	has	have	VERB
cana-4853	119	4	a	a	DET
cana-4853	119	5	quantum	quantum	ADJ
cana-4853	119	6	cost	cost	NOUN
cana-4853	119	7	of	of	ADP
cana-4853	119	8	24	24	NUM
cana-4853	119	9	,	,	PUNCT
cana-4853	119	10	which	which	PRON
cana-4853	119	11	is	be	AUX
cana-4853	119	12	substantially	substantially	ADV
cana-4853	119	13	less	less	ADJ
cana-4853	119	14	than	than	ADP
cana-4853	119	15	the	the	DET
cana-4853	119	16	58	58	NUM
cana-4853	119	17	stated	state	VERB
cana-4853	119	18	in	in	ADP
cana-4853	119	19	[	[	X
cana-4853	119	20	23	23	NUM
cana-4853	119	21	]	]	PUNCT
cana-4853	119	22	,	,	PUNCT
cana-4853	119	23	even	even	ADV
cana-4853	119	24	though	though	SCONJ
cana-4853	119	25	both	both	PRON
cana-4853	119	26	uses	use	VERB
cana-4853	119	27	four	four	NUM
cana-4853	119	28	steady	steady	ADJ
cana-4853	119	29	entries	entry	NOUN
cana-4853	119	30	and	and	CCONJ
cana-4853	119	31	produce	produce	VERB
cana-4853	119	32	two	two	NUM
cana-4853	119	33	trash	trash	NOUN
cana-4853	119	34	outputs	output	NOUN
cana-4853	119	35	.	.	PUNCT
cana-4853	120	1	our	our	PRON
cana-4853	120	2	suggested	suggest	VERB
cana-4853	120	3	circuits	circuit	NOUN
cana-4853	120	4	improve	improve	VERB
cana-4853	120	5	reversible	reversible	ADJ
cana-4853	120	6	computing	computing	NOUN
cana-4853	120	7	efficiency	efficiency	NOUN
cana-4853	120	8	by	by	ADP
cana-4853	120	9	reducing	reduce	VERB
cana-4853	120	10	quantum	quantum	ADJ
cana-4853	120	11	cost	cost	NOUN
cana-4853	120	12	.	.	PUNCT
cana-4853	121	1	(	(	PUNCT
cana-4853	121	2	a	a	X
cana-4853	121	3	)	)	PUNCT
cana-4853	121	4	communications	communication	NOUN
cana-4853	121	5	on	on	ADP
cana-4853	121	6	applied	apply	VERB
cana-4853	121	7	nonlinear	nonlinear	ADJ
cana-4853	121	8	analysis	analysis	NOUN
cana-4853	121	9	issn	issn	NOUN
cana-4853	121	10	:	:	PUNCT
cana-4853	121	11	1074	1074	NUM
cana-4853	121	12	-	-	PUNCT
cana-4853	121	13	133x	133x	NUM
cana-4853	121	14	vol	vol	VERB
cana-4853	121	15	32	32	NUM
cana-4853	121	16	no	no	NOUN
cana-4853	121	17	.	.	PUNCT
cana-4853	122	1	10s	10	NOUN
cana-4853	122	2	(	(	PUNCT
cana-4853	122	3	2025	2025	NUM
cana-4853	122	4	)	)	PUNCT
cana-4853	122	5	657	657	NUM
cana-4853	122	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	122	7	(	(	PUNCT
cana-4853	122	8	b	b	NOUN
cana-4853	122	9	)	)	PUNCT
cana-4853	122	10	figure	figure	NOUN
cana-4853	122	11	6	6	NUM
cana-4853	122	12	:	:	PUNCT
cana-4853	122	13	the	the	DET
cana-4853	122	14	circuit	circuit	NOUN
cana-4853	122	15	for	for	ADP
cana-4853	122	16	the	the	DET
cana-4853	122	17	suggested	suggest	VERB
cana-4853	122	18	quaternary	quaternary	ADJ
cana-4853	122	19	reversible	reversible	ADJ
cana-4853	122	20	1x16	1x16	NUM
cana-4853	122	21	demultiplexer	demultiplexer	NOUN
cana-4853	122	22	.	.	PUNCT
cana-4853	123	1	a	a	X
cana-4853	123	2	)	)	PUNCT
cana-4853	123	3	the	the	DET
cana-4853	123	4	representation	representation	NOUN
cana-4853	123	5	in	in	ADP
cana-4853	123	6	logic	logic	NOUN
cana-4853	123	7	.	.	PUNCT
cana-4853	124	1	b	b	X
cana-4853	124	2	)	)	PUNCT
cana-4853	124	3	the	the	DET
cana-4853	124	4	main	main	ADJ
cana-4853	124	5	and	and	CCONJ
cana-4853	124	6	most	most	ADV
cana-4853	124	7	efficient	efficient	ADJ
cana-4853	124	8	realization	realization	NOUN
cana-4853	124	9	.	.	PUNCT
cana-4853	125	1	figure	figure	VERB
cana-4853	125	2	7	7	NUM
cana-4853	125	3	:	:	PUNCT
cana-4853	125	4	the	the	DET
cana-4853	125	5	proposed	propose	VERB
cana-4853	125	6	1xn	1xn	PROPN
cana-4853	125	7	demultiplexer	demultiplexer	NOUN
cana-4853	125	8	's	's	PART
cana-4853	125	9	logical	logical	ADJ
cana-4853	125	10	design	design	NOUN
cana-4853	125	11	in	in	ADP
cana-4853	125	12	this	this	DET
cana-4853	125	13	proposed	propose	VERB
cana-4853	125	14	system	system	NOUN
cana-4853	125	15	we	we	PRON
cana-4853	125	16	have	have	AUX
cana-4853	125	17	implemented	implement	VERB
cana-4853	125	18	the	the	DET
cana-4853	125	19	following	follow	VERB
cana-4853	125	20	parameters	parameter	NOUN
cana-4853	125	21	like	like	ADP
cana-4853	125	22	delay	delay	NOUN
cana-4853	125	23	,	,	PUNCT
cana-4853	125	24	power	power	NOUN
cana-4853	125	25	,	,	PUNCT
cana-4853	125	26	total	total	ADJ
cana-4853	125	27	delay	delay	NOUN
cana-4853	125	28	product	product	NOUN
cana-4853	125	29	respectively	respectively	ADV
cana-4853	125	30	by	by	ADP
cana-4853	125	31	using	use	VERB
cana-4853	125	32	three	three	NUM
cana-4853	125	33	different	different	ADJ
cana-4853	125	34	fpga	fpga	NOUN
cana-4853	125	35	’s	’	NOUN
cana-4853	125	36	as	as	ADP
cana-4853	125	37	spartan-6	spartan-6	PROPN
cana-4853	125	38	,	,	PUNCT
cana-4853	125	39	kintex-7	kintex-7	PROPN
cana-4853	125	40	,	,	PUNCT
cana-4853	125	41	artix-7	artix-7	NUM
cana-4853	125	42	to	to	PART
cana-4853	125	43	get	get	VERB
cana-4853	125	44	efficient	efficient	ADJ
cana-4853	125	45	values	value	NOUN
cana-4853	125	46	as	as	SCONJ
cana-4853	125	47	follows	follow	VERB
cana-4853	125	48	from	from	ADP
cana-4853	125	49	table	table	NOUN
cana-4853	125	50	1	1	NUM
cana-4853	125	51	,	,	PUNCT
cana-4853	125	52	table	table	NOUN
cana-4853	125	53	2	2	NUM
cana-4853	125	54	,	,	PUNCT
cana-4853	125	55	table	table	NOUN
cana-4853	125	56	3	3	NUM
cana-4853	125	57	.	.	PUNCT
cana-4853	125	58	from	from	ADP
cana-4853	125	59	the	the	DET
cana-4853	125	60	table.1	table.1	NOUN
cana-4853	125	61	,	,	PUNCT
cana-4853	125	62	the	the	DET
cana-4853	125	63	proposed	propose	VERB
cana-4853	125	64	technique	technique	NOUN
cana-4853	125	65	enhances	enhance	VERB
cana-4853	125	66	mux	mux	NOUN
cana-4853	125	67	and	and	CCONJ
cana-4853	125	68	demux	demux	PROPN
cana-4853	125	69	efficiency	efficiency	NOUN
cana-4853	125	70	with	with	ADP
cana-4853	125	71	notable	notable	ADJ
cana-4853	125	72	improvements	improvement	NOUN
cana-4853	125	73	as	as	ADP
cana-4853	125	74	speed	speed	NOUN
cana-4853	125	75	:	:	PUNCT
cana-4853	125	76	achieves	achieve	VERB
cana-4853	125	77	70	70	NUM
cana-4853	125	78	%	%	NOUN
cana-4853	125	79	to	to	PART
cana-4853	125	80	90	90	NUM
cana-4853	125	81	%	%	NOUN
cana-4853	125	82	delay	delay	NOUN
cana-4853	125	83	reduction	reduction	NOUN
cana-4853	125	84	for	for	ADP
cana-4853	125	85	faster	fast	ADJ
cana-4853	125	86	performance	performance	NOUN
cana-4853	125	87	,	,	PUNCT
cana-4853	125	88	power	power	NOUN
cana-4853	125	89	efficiency	efficiency	NOUN
cana-4853	125	90	:	:	PUNCT
cana-4853	125	91	reduces	reduce	VERB
cana-4853	125	92	power	power	NOUN
cana-4853	125	93	consumption	consumption	NOUN
cana-4853	125	94	by	by	ADP
cana-4853	125	95	20	20	NUM
cana-4853	125	96	%	%	NOUN
cana-4853	125	97	to	to	PART
cana-4853	125	98	65	65	NUM
cana-4853	125	99	%	%	NOUN
cana-4853	125	100	,	,	PUNCT
cana-4853	125	101	resource	resource	NOUN
cana-4853	125	102	optimization	optimization	NOUN
cana-4853	125	103	:	:	PUNCT
cana-4853	125	104	cuts	cut	VERB
cana-4853	125	105	fpga	fpga	PROPN
cana-4853	125	106	resource	resource	NOUN
cana-4853	125	107	usage	usage	NOUN
cana-4853	125	108	by	by	ADP
cana-4853	125	109	up	up	ADP
cana-4853	125	110	to	to	PART
cana-4853	125	111	75	75	NUM
cana-4853	125	112	%	%	NOUN
cana-4853	125	113	,	,	PUNCT
cana-4853	125	114	pdp	pdp	PROPN
cana-4853	125	115	enhancement	enhancement	NOUN
cana-4853	125	116	:	:	PUNCT
cana-4853	125	117	boosts	boost	VERB
cana-4853	125	118	efficiency	efficiency	NOUN
cana-4853	125	119	by	by	ADP
cana-4853	125	120	up	up	ADP
cana-4853	125	121	to	to	PART
cana-4853	125	122	94.5	94.5	NUM
cana-4853	125	123	%	%	NOUN
cana-4853	125	124	.	.	PUNCT
cana-4853	126	1	these	these	DET
cana-4853	126	2	advancements	advancement	NOUN
cana-4853	126	3	demonstrate	demonstrate	VERB
cana-4853	126	4	superior	superior	ADJ
cana-4853	126	5	performance	performance	NOUN
cana-4853	126	6	compared	compare	VERB
cana-4853	126	7	to	to	ADP
cana-4853	126	8	existing	exist	VERB
cana-4853	126	9	designs	design	NOUN
cana-4853	126	10	.	.	PUNCT
cana-4853	127	1	from	from	ADP
cana-4853	127	2	table.2	table.2	PROPN
cana-4853	127	3	,	,	PUNCT
cana-4853	127	4	the	the	DET
cana-4853	127	5	proposed	propose	VERB
cana-4853	127	6	method	method	NOUN
cana-4853	127	7	has	have	AUX
cana-4853	127	8	been	be	AUX
cana-4853	127	9	provided	provide	VERB
cana-4853	127	10	lower	low	ADJ
cana-4853	127	11	latency	latency	NOUN
cana-4853	127	12	,	,	PUNCT
cana-4853	127	13	power	power	NOUN
cana-4853	127	14	consumption	consumption	NOUN
cana-4853	127	15	,	,	PUNCT
cana-4853	127	16	and	and	CCONJ
cana-4853	127	17	the	the	DET
cana-4853	127	18	power	power	NOUN
cana-4853	127	19	-	-	PUNCT
cana-4853	127	20	latency	latency	NOUN
cana-4853	127	21	product	product	NOUN
cana-4853	127	22	(	(	PUNCT
cana-4853	127	23	pdp).for	pdp).for	ADP
cana-4853	127	24	4×1	4×1	PROPN
cana-4853	127	25	mux	mux	PROPN
cana-4853	127	26	:	:	PUNCT
cana-4853	127	27	produces	produce	VERB
cana-4853	127	28	a	a	DET
cana-4853	127	29	small	small	ADJ
cana-4853	127	30	power	power	NOUN
cana-4853	127	31	savings	saving	NOUN
cana-4853	127	32	while	while	SCONJ
cana-4853	127	33	reducing	reduce	VERB
cana-4853	127	34	delays	delay	NOUN
cana-4853	127	35	by	by	ADP
cana-4853	127	36	24	24	NUM
cana-4853	127	37	%	%	NOUN
cana-4853	127	38	and	and	CCONJ
cana-4853	127	39	improving	improve	VERB
cana-4853	127	40	pdp	pdp	PROPN
cana-4853	127	41	by	by	ADP
cana-4853	127	42	24.6	24.6	NUM
cana-4853	127	43	%	%	NOUN
cana-4853	127	44	,	,	PUNCT
cana-4853	127	45	1×4	1×4	NUM
cana-4853	127	46	demux	demux	NOUN
cana-4853	127	47	:	:	PUNCT
cana-4853	127	48	notable	notable	ADJ
cana-4853	127	49	improvements	improvement	NOUN
cana-4853	127	50	in	in	ADP
cana-4853	127	51	pdp	pdp	PROPN
cana-4853	127	52	of	of	ADP
cana-4853	127	53	60.7	60.7	NUM
cana-4853	127	54	%	%	NOUN
cana-4853	127	55	and	and	CCONJ
cana-4853	127	56	latency	latency	NOUN
cana-4853	127	57	reduction	reduction	NOUN
cana-4853	127	58	of	of	ADP
cana-4853	127	59	59.5	59.5	NUM
cana-4853	127	60	%	%	NOUN
cana-4853	127	61	,	,	PUNCT
cana-4853	127	62	as	as	ADV
cana-4853	127	63	well	well	ADV
cana-4853	127	64	as	as	ADP
cana-4853	127	65	lower	low	ADJ
cana-4853	127	66	power	power	NOUN
cana-4853	127	67	usage	usage	NOUN
cana-4853	127	68	.	.	PUNCT
cana-4853	128	1	moderate	moderate	ADJ
cana-4853	128	2	3.8	3.8	NUM
cana-4853	128	3	-	-	SYM
cana-4853	128	4	3.9	3.9	NUM
cana-4853	128	5	%	%	NOUN
cana-4853	128	6	delay	delay	NOUN
cana-4853	128	7	reduction	reduction	NOUN
cana-4853	128	8	,	,	PUNCT
cana-4853	128	9	14.3	14.3	NUM
cana-4853	128	10	%	%	NOUN
cana-4853	128	11	power	power	NOUN
cana-4853	128	12	savings	saving	NOUN
cana-4853	128	13	,	,	PUNCT
cana-4853	128	14	and	and	CCONJ
cana-4853	128	15	8.6	8.6	NUM
cana-4853	128	16	-	-	SYM
cana-4853	128	17	17.6	17.6	NUM
cana-4853	128	18	%	%	NOUN
cana-4853	128	19	pdp	pdp	PROPN
cana-4853	128	20	improvement	improvement	NOUN
cana-4853	128	21	are	be	AUX
cana-4853	128	22	achieved	achieve	VERB
cana-4853	128	23	using	use	VERB
cana-4853	128	24	16×1	16×1	PROPN
cana-4853	128	25	mux	mux	NOUN
cana-4853	128	26	and	and	CCONJ
cana-4853	128	27	1×16	1×16	NUM
cana-4853	128	28	demux	demux	NOUN
cana-4853	128	29	.	.	PUNCT
cana-4853	129	1	up	up	ADP
cana-4853	129	2	communications	communication	NOUN
cana-4853	129	3	on	on	ADP
cana-4853	129	4	applied	apply	VERB
cana-4853	129	5	nonlinear	nonlinear	ADJ
cana-4853	129	6	analysis	analysis	NOUN
cana-4853	129	7	issn	issn	NOUN
cana-4853	129	8	:	:	PUNCT
cana-4853	129	9	1074	1074	NUM
cana-4853	129	10	-	-	PUNCT
cana-4853	129	11	133x	133x	NUM
cana-4853	129	12	vol	vol	VERB
cana-4853	129	13	32	32	NUM
cana-4853	129	14	no	no	NOUN
cana-4853	129	15	.	.	PUNCT
cana-4853	130	1	10s	10	NOUN
cana-4853	130	2	(	(	PUNCT
cana-4853	130	3	2025	2025	NUM
cana-4853	130	4	)	)	PUNCT
cana-4853	130	5	658	658	NUM
cana-4853	130	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	130	7	to	to	ADP
cana-4853	130	8	36	36	NUM
cana-4853	130	9	%	%	NOUN
cana-4853	130	10	pdp	pdp	PROPN
cana-4853	130	11	improvement	improvement	NOUN
cana-4853	130	12	,	,	PUNCT
cana-4853	130	13	up	up	ADV
cana-4853	130	14	to	to	PART
cana-4853	130	15	34.7	34.7	NUM
cana-4853	130	16	%	%	NOUN
cana-4853	130	17	power	power	NOUN
cana-4853	130	18	savings	saving	NOUN
cana-4853	130	19	,	,	PUNCT
cana-4853	130	20	and	and	CCONJ
cana-4853	130	21	31.2	31.2	NUM
cana-4853	130	22	%	%	NOUN
cana-4853	130	23	latency	latency	NOUN
cana-4853	130	24	improvement	improvement	NOUN
cana-4853	130	25	are	be	AUX
cana-4853	130	26	achieved	achieve	VERB
cana-4853	130	27	with	with	ADP
cana-4853	130	28	32×1	32×1	PROPN
cana-4853	130	29	mux	mux	PROPN
cana-4853	130	30	&	&	CCONJ
cana-4853	130	31	1×32	1×32	NUM
cana-4853	130	32	demux	demux	NOUN
cana-4853	130	33	.	.	PUNCT
cana-4853	131	1	moreover	moreover	ADV
cana-4853	131	2	,	,	PUNCT
cana-4853	131	3	up	up	ADP
cana-4853	131	4	to	to	PART
cana-4853	131	5	68.9	68.9	NUM
cana-4853	131	6	%	%	NOUN
cana-4853	131	7	power	power	NOUN
cana-4853	131	8	savings	saving	NOUN
cana-4853	131	9	and	and	CCONJ
cana-4853	131	10	69.5	69.5	NUM
cana-4853	131	11	%	%	NOUN
cana-4853	131	12	pdp	pdp	PROPN
cana-4853	131	13	improvement	improvement	NOUN
cana-4853	131	14	,	,	PUNCT
cana-4853	131	15	64×1	64×1	PROPN
cana-4853	131	16	mux	mux	PROPN
cana-4853	131	17	&	&	CCONJ
cana-4853	131	18	1×64	1×64	NUM
cana-4853	131	19	demux	demux	NOUN
cana-4853	131	20	offer	offer	VERB
cana-4853	131	21	the	the	DET
cana-4853	131	22	most	most	ADJ
cana-4853	131	23	improvements	improvement	NOUN
cana-4853	131	24	and	and	CCONJ
cana-4853	131	25	are	be	AUX
cana-4853	131	26	therefore	therefore	ADV
cana-4853	131	27	very	very	ADV
cana-4853	131	28	effective	effective	ADJ
cana-4853	131	29	for	for	ADP
cana-4853	131	30	power	power	NOUN
cana-4853	131	31	sensitive	sensitive	ADJ
cana-4853	131	32	fpga	fpga	PROPN
cana-4853	131	33	applications	application	NOUN
cana-4853	131	34	.	.	PUNCT
cana-4853	132	1	from	from	ADP
cana-4853	132	2	the	the	DET
cana-4853	132	3	table.3	table.3	PROPN
cana-4853	132	4	,	,	PUNCT
cana-4853	132	5	the	the	DET
cana-4853	132	6	proposed	propose	VERB
cana-4853	132	7	method	method	NOUN
cana-4853	132	8	from	from	ADP
cana-4853	132	9	table	table	NOUN
cana-4853	132	10	3	3	NUM
cana-4853	132	11	optimizes	optimize	VERB
cana-4853	132	12	delay	delay	NOUN
cana-4853	132	13	,	,	PUNCT
cana-4853	132	14	power	power	NOUN
cana-4853	132	15	,	,	PUNCT
cana-4853	132	16	pdp	pdp	PROPN
cana-4853	132	17	,	,	PUNCT
cana-4853	132	18	and	and	CCONJ
cana-4853	132	19	resource	resource	NOUN
cana-4853	132	20	utilization	utilization	NOUN
cana-4853	132	21	,	,	PUNCT
cana-4853	132	22	which	which	PRON
cana-4853	132	23	greatly	greatly	ADV
cana-4853	132	24	enhances	enhance	VERB
cana-4853	132	25	mux	mux	PROPN
cana-4853	132	26	/	/	SYM
cana-4853	132	27	demux	demux	PROPN
cana-4853	132	28	performance	performance	NOUN
cana-4853	132	29	on	on	ADP
cana-4853	132	30	artix-7	artix-7	NUM
cana-4853	132	31	fpga	fpga	PROPN
cana-4853	132	32	.	.	PUNCT
cana-4853	132	33	table	table	NOUN
cana-4853	132	34	1	1	NUM
cana-4853	132	35	:	:	PUNCT
cana-4853	132	36	compares	compare	VERB
cana-4853	132	37	various	various	ADJ
cana-4853	132	38	mux	mux	PROPN
cana-4853	132	39	/	/	SYM
cana-4853	132	40	demux	demux	PROPN
cana-4853	132	41	techniques	technique	NOUN
cana-4853	132	42	on	on	ADP
cana-4853	132	43	the	the	DET
cana-4853	132	44	spartan-6	spartan-6	PROPN
cana-4853	132	45	fpga	fpga	NOUN
cana-4853	132	46	based	base	VERB
cana-4853	132	47	on	on	ADP
cana-4853	132	48	lut	lut	PROPN
cana-4853	132	49	/	/	SYM
cana-4853	132	50	ff	ff	NOUN
cana-4853	132	51	usage	usage	NOUN
cana-4853	132	52	,	,	PUNCT
cana-4853	132	53	delay	delay	NOUN
cana-4853	132	54	,	,	PUNCT
cana-4853	132	55	power	power	NOUN
cana-4853	132	56	consumption	consumption	NOUN
cana-4853	132	57	,	,	PUNCT
cana-4853	132	58	and	and	CCONJ
cana-4853	132	59	power	power	NOUN
cana-4853	132	60	-	-	PUNCT
cana-4853	132	61	delay	delay	NOUN
cana-4853	132	62	product	product	NOUN
cana-4853	132	63	(	(	PUNCT
cana-4853	132	64	pdp	pdp	PROPN
cana-4853	132	65	)	)	PUNCT
cana-4853	132	66	.	.	PUNCT
cana-4853	133	1	spartan-6	spartan-6	PRON
cana-4853	133	2	size	size	NOUN
cana-4853	133	3	of	of	ADP
cana-4853	133	4	the	the	DET
cana-4853	133	5	mux	mux	PROPN
cana-4853	133	6	technique	technique	NOUN
cana-4853	133	7	lut	lut	PROPN
cana-4853	133	8	ff	ff	PROPN
cana-4853	133	9	total	total	NOUN
cana-4853	133	10	delay(ns	delay(ns	NOUN
cana-4853	133	11	)	)	PUNCT
cana-4853	133	12	total	total	ADJ
cana-4853	133	13	power	power	NOUN
cana-4853	133	14	(	(	PUNCT
cana-4853	133	15	mw	mw	PROPN
cana-4853	133	16	)	)	PUNCT
cana-4853	133	17	pdp(ns*mw	pdp(ns*mw	PROPN
cana-4853	133	18	)	)	PUNCT
cana-4853	133	19	4x1	4x1	NUM
cana-4853	133	20	mux	mux	PROPN
cana-4853	134	1	[	[	X
cana-4853	134	2	23	23	NUM
cana-4853	134	3	]	]	SYM
cana-4853	134	4	4	4	NUM
cana-4853	134	5	4	4	NUM
cana-4853	134	6	9.082	9.082	NUM
cana-4853	134	7	40.55	40.55	NUM
cana-4853	134	8	368.27	368.27	NUM
cana-4853	134	9	[	[	X
cana-4853	134	10	19	19	NUM
cana-4853	134	11	]	]	SYM
cana-4853	134	12	4	4	NUM
cana-4853	134	13	4	4	NUM
cana-4853	134	14	8.112	8.112	NUM
cana-4853	134	15	35.06	35.06	NUM
cana-4853	134	16	284.4	284.4	NUM
cana-4853	134	17	proposed	propose	VERB
cana-4853	134	18	6	6	NUM
cana-4853	134	19	6	6	NUM
cana-4853	134	20	1.042	1.042	NUM
cana-4853	134	21	27.88	27.88	NUM
cana-4853	134	22	29.05	29.05	NUM
cana-4853	134	23	1x4	1x4	NUM
cana-4853	134	24	demux	demux	NOUN
cana-4853	135	1	[	[	X
cana-4853	135	2	23	23	NUM
cana-4853	135	3	]	]	SYM
cana-4853	135	4	16	16	NUM
cana-4853	135	5	16	16	NUM
cana-4853	135	6	9.867	9.867	NUM
cana-4853	135	7	36.97	36.97	NUM
cana-4853	135	8	364.78	364.78	NUM
cana-4853	135	9	[	[	X
cana-4853	135	10	19	19	NUM
cana-4853	135	11	]	]	SYM
cana-4853	135	12	16	16	NUM
cana-4853	135	13	16	16	NUM
cana-4853	135	14	8.067	8.067	NUM
cana-4853	135	15	30.26	30.26	NUM
cana-4853	135	16	244.1	244.1	NUM
cana-4853	135	17	proposed	propose	VERB
cana-4853	135	18	4	4	NUM
cana-4853	135	19	4	4	NUM
cana-4853	135	20	1.325	1.325	NUM
cana-4853	135	21	27.77	27.77	NUM
cana-4853	135	22	36.79	36.79	NUM
cana-4853	135	23	16x1	16x1	NUM
cana-4853	135	24	mux	mux	PROPN
cana-4853	136	1	[	[	X
cana-4853	136	2	23	23	NUM
cana-4853	136	3	]	]	SYM
cana-4853	136	4	16	16	NUM
cana-4853	137	1	16	16	NUM
cana-4853	137	2	9.179	9.179	NUM
cana-4853	137	3	62.35	62.35	NUM
cana-4853	137	4	572.31	572.31	NUM
cana-4853	137	5	[	[	X
cana-4853	137	6	19	19	NUM
cana-4853	137	7	]	]	SYM
cana-4853	137	8	16	16	NUM
cana-4853	137	9	16	16	NUM
cana-4853	137	10	8.194	8.194	NUM
cana-4853	137	11	62.62	62.62	NUM
cana-4853	137	12	513.1	513.1	NUM
cana-4853	137	13	proposed	propose	VERB
cana-4853	137	14	4	4	NUM
cana-4853	137	15	4	4	NUM
cana-4853	137	16	1.869	1.869	NUM
cana-4853	137	17	35.66	35.66	NUM
cana-4853	137	18	66.64	66.64	NUM
cana-4853	137	19	1x16	1x16	NUM
cana-4853	137	20	demux	demux	NOUN
cana-4853	137	21	[	[	X
cana-4853	137	22	23	23	NUM
cana-4853	137	23	]	]	SYM
cana-4853	137	24	64	64	NUM
cana-4853	137	25	64	64	NUM
cana-4853	137	26	9.343	9.343	NUM
cana-4853	137	27	38.91	38.91	NUM
cana-4853	137	28	363.53	363.53	NUM
cana-4853	137	29	[	[	X
cana-4853	137	30	19	19	NUM
cana-4853	137	31	]	]	SYM
cana-4853	137	32	64	64	NUM
cana-4853	137	33	64	64	NUM
cana-4853	137	34	9.257	9.257	NUM
cana-4853	137	35	39.31	39.31	NUM
cana-4853	137	36	363.81	363.81	NUM
cana-4853	137	37	proposed	propose	VERB
cana-4853	137	38	16	16	NUM
cana-4853	137	39	16	16	NUM
cana-4853	137	40	2.735	2.735	NUM
cana-4853	137	41	30.86	30.86	NUM
cana-4853	137	42	84.4	84.4	NUM
cana-4853	137	43	32x1	32x1	NUM
cana-4853	137	44	mux	mux	PROPN
cana-4853	138	1	[	[	X
cana-4853	138	2	23	23	NUM
cana-4853	138	3	]	]	SYM
cana-4853	138	4	40	40	NUM
cana-4853	138	5	40	40	NUM
cana-4853	139	1	10.908	10.908	NUM
cana-4853	139	2	216.79	216.79	NUM
cana-4853	139	3	2364.74	2364.74	NUM
cana-4853	139	4	[	[	SYM
cana-4853	139	5	19	19	NUM
cana-4853	139	6	]	]	SYM
cana-4853	139	7	40	40	NUM
cana-4853	139	8	40	40	NUM
cana-4853	139	9	13.469	13.469	NUM
cana-4853	139	10	118.17	118.17	NUM
cana-4853	139	11	1591.63	1591.63	NUM
cana-4853	139	12	proposed	propose	VERB
cana-4853	139	13	10	10	NUM
cana-4853	139	14	10	10	NUM
cana-4853	139	15	2.246	2.246	NUM
cana-4853	139	16	98.24	98.24	NUM
cana-4853	139	17	220.64	220.64	NUM
cana-4853	139	18	1x32	1x32	NUM
cana-4853	139	19	demux	demux	NOUN
cana-4853	139	20	[	[	X
cana-4853	139	21	23	23	NUM
cana-4853	139	22	]	]	SYM
cana-4853	139	23	128	128	NUM
cana-4853	139	24	128	128	NUM
cana-4853	139	25	9.827	9.827	NUM
cana-4853	139	26	130.49	130.49	NUM
cana-4853	139	27	1282.32	1282.32	NUM
cana-4853	139	28	[	[	X
cana-4853	139	29	19	19	NUM
cana-4853	139	30	]	]	SYM
cana-4853	139	31	64	64	NUM
cana-4853	139	32	64	64	NUM
cana-4853	139	33	9.406	9.406	NUM
cana-4853	139	34	103.9	103.9	NUM
cana-4853	139	35	977.28	977.28	NUM
cana-4853	139	36	proposed	propose	VERB
cana-4853	139	37	32	32	NUM
cana-4853	139	38	32	32	NUM
cana-4853	139	39	1.894	1.894	NUM
cana-4853	139	40	88.76	88.76	NUM
cana-4853	139	41	168.11	168.11	NUM
cana-4853	139	42	64x1	64x1	NUM
cana-4853	139	43	mux	mux	NOUN
cana-4853	140	1	[	[	X
cana-4853	140	2	23	23	NUM
cana-4853	140	3	]	]	SYM
cana-4853	140	4	84	84	NUM
cana-4853	140	5	84	84	NUM
cana-4853	140	6	12.738	12.738	NUM
cana-4853	140	7	337.78	337.78	NUM
cana-4853	140	8	4302.64	4302.64	NUM
cana-4853	140	9	[	[	X
cana-4853	140	10	19	19	NUM
cana-4853	140	11	]	]	SYM
cana-4853	140	12	4	4	NUM
cana-4853	140	13	4	4	NUM
cana-4853	140	14	8.112	8.112	NUM
cana-4853	140	15	88.82	88.82	NUM
cana-4853	140	16	720.5	720.5	NUM
cana-4853	140	17	proposed	propose	VERB
cana-4853	140	18	21	21	NUM
cana-4853	140	19	21	21	NUM
cana-4853	140	20	2.032	2.032	NUM
cana-4853	140	21	116.24	116.24	NUM
cana-4853	140	22	236.19	236.19	NUM
cana-4853	140	23	1x64	1x64	NUM
cana-4853	140	24	demux	demux	NOUN
cana-4853	141	1	[	[	X
cana-4853	141	2	23	23	NUM
cana-4853	141	3	]	]	SYM
cana-4853	141	4	264	264	NUM
cana-4853	141	5	264	264	NUM
cana-4853	141	6	10.78	10.78	NUM
cana-4853	141	7	134.03	134.03	NUM
cana-4853	141	8	1444.84	1444.84	NUM
cana-4853	142	1	[	[	X
cana-4853	142	2	19	19	NUM
cana-4853	142	3	]	]	SYM
cana-4853	142	4	32	32	NUM
cana-4853	142	5	32	32	NUM
cana-4853	142	6	8.547	8.547	NUM
cana-4853	142	7	86.46	86.46	NUM
cana-4853	142	8	738.97	738.97	NUM
cana-4853	142	9	proposed	propose	VERB
cana-4853	142	10	68	68	NUM
cana-4853	142	11	68	68	NUM
cana-4853	142	12	1.761	1.761	NUM
cana-4853	142	13	89.36	89.36	NUM
cana-4853	142	14	157.36	157.36	NUM
cana-4853	142	15	principal	principal	ADJ
cana-4853	142	16	improvements	improvement	NOUN
cana-4853	142	17	:	:	PUNCT
cana-4853	142	18	delay	delay	NOUN
cana-4853	142	19	:	:	PUNCT
cana-4853	142	20	up	up	ADP
cana-4853	142	21	to	to	PART
cana-4853	142	22	49.3	49.3	NUM
cana-4853	142	23	%	%	NOUN
cana-4853	142	24	quicker	quick	ADJ
cana-4853	142	25	,	,	PUNCT
cana-4853	142	26	power	power	NOUN
cana-4853	142	27	:	:	PUNCT
cana-4853	142	28	up	up	ADP
cana-4853	142	29	to	to	PART
cana-4853	142	30	78	78	NUM
cana-4853	142	31	%	%	NOUN
cana-4853	142	32	dynamic	dynamic	ADJ
cana-4853	142	33	power	power	NOUN
cana-4853	142	34	reduction	reduction	NOUN
cana-4853	142	35	,	,	PUNCT
cana-4853	142	36	pdp	pdp	PROPN
cana-4853	142	37	:	:	PUNCT
cana-4853	142	38	down	down	ADV
cana-4853	142	39	as	as	ADV
cana-4853	142	40	much	much	ADJ
cana-4853	142	41	as	as	ADP
cana-4853	142	42	53.7	53.7	NUM
cana-4853	142	43	%	%	NOUN
cana-4853	142	44	,	,	PUNCT
cana-4853	142	45	resource	resource	NOUN
cana-4853	142	46	usage	usage	NOUN
cana-4853	142	47	:	:	PUNCT
cana-4853	142	48	74	74	NUM
cana-4853	142	49	-	-	SYM
cana-4853	142	50	75	75	NUM
cana-4853	142	51	%	%	NOUN
cana-4853	142	52	reduction	reduction	NOUN
cana-4853	142	53	in	in	ADP
cana-4853	142	54	luts	luts	PROPN
cana-4853	142	55	and	and	CCONJ
cana-4853	142	56	ffs	ffs	NOUN
cana-4853	142	57	gains	gain	NOUN
cana-4853	142	58	in	in	ADP
cana-4853	142	59	performance	performance	NOUN
cana-4853	142	60	4×1	4×1	PROPN
cana-4853	142	61	mux	mux	PROPN
cana-4853	142	62	:	:	PUNCT
cana-4853	142	63	47.6	47.6	NUM
cana-4853	142	64	%	%	NOUN
cana-4853	142	65	better	well	ADJ
cana-4853	142	66	pdp	pdp	PROPN
cana-4853	142	67	,	,	PUNCT
cana-4853	142	68	12	12	NUM
cana-4853	142	69	%	%	NOUN
cana-4853	142	70	lower	low	ADJ
cana-4853	142	71	power	power	NOUN
cana-4853	142	72	,	,	PUNCT
cana-4853	142	73	and	and	CCONJ
cana-4853	142	74	46	46	NUM
cana-4853	142	75	%	%	NOUN
cana-4853	142	76	quicker,1×4	quicker,1×4	NOUN
cana-4853	142	77	demux	demux	NOUN
cana-4853	142	78	:	:	PUNCT
cana-4853	142	79	75	75	NUM
cana-4853	142	80	%	%	NOUN
cana-4853	142	81	fewer	few	ADJ
cana-4853	142	82	luts	luts	PROPN
cana-4853	142	83	/	/	SYM
cana-4853	142	84	ffs	ffs	PROPN
cana-4853	142	85	,	,	PUNCT
cana-4853	142	86	64.3	64.3	NUM
cana-4853	142	87	%	%	NOUN
cana-4853	142	88	power	power	NOUN
cana-4853	142	89	reduction	reduction	NOUN
cana-4853	142	90	,	,	PUNCT
cana-4853	142	91	and	and	CCONJ
cana-4853	142	92	49.3	49.3	NUM
cana-4853	142	93	%	%	NOUN
cana-4853	142	94	speed.16×1	speed.16×1	PROPN
cana-4853	142	95	mux	mux	PROPN
cana-4853	142	96	&	&	CCONJ
cana-4853	142	97	1×16	1×16	NUM
cana-4853	142	98	demux	demux	NOUN
cana-4853	142	99	:	:	PUNCT
cana-4853	142	100	13.9–28.7	13.9–28.7	NUM
cana-4853	142	101	%	%	NOUN
cana-4853	142	102	pdp	pdp	PROPN
cana-4853	142	103	gain	gain	NOUN
cana-4853	142	104	,	,	PUNCT
cana-4853	142	105	75	75	NUM
cana-4853	142	106	%	%	NOUN
cana-4853	142	107	communications	communication	NOUN
cana-4853	142	108	on	on	ADP
cana-4853	142	109	applied	apply	VERB
cana-4853	142	110	nonlinear	nonlinear	ADJ
cana-4853	142	111	analysis	analysis	NOUN
cana-4853	142	112	issn	issn	NOUN
cana-4853	142	113	:	:	PUNCT
cana-4853	142	114	1074	1074	NUM
cana-4853	142	115	-	-	PUNCT
cana-4853	142	116	133x	133x	NUM
cana-4853	142	117	vol	vol	VERB
cana-4853	142	118	32	32	NUM
cana-4853	142	119	no	no	NOUN
cana-4853	142	120	.	.	PUNCT
cana-4853	142	121	10s	10	NOUN
cana-4853	142	122	(	(	PUNCT
cana-4853	142	123	2025	2025	NUM
cana-4853	142	124	)	)	PUNCT
cana-4853	142	125	659	659	NUM
cana-4853	142	126	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	142	127	power	power	NOUN
cana-4853	142	128	savings.32×1	savings.32×1	PROPN
cana-4853	142	129	mux	mux	PROPN
cana-4853	142	130	&	&	CCONJ
cana-4853	142	131	1×32	1×32	NUM
cana-4853	142	132	demux	demux	NOUN
cana-4853	142	133	:	:	PUNCT
cana-4853	142	134	24	24	NUM
cana-4853	142	135	-	-	SYM
cana-4853	142	136	43	43	NUM
cana-4853	142	137	%	%	NOUN
cana-4853	142	138	pdp	pdp	PROPN
cana-4853	142	139	gain	gain	NOUN
cana-4853	142	140	,	,	PUNCT
cana-4853	142	141	76.4	76.4	NUM
cana-4853	142	142	-	-	SYM
cana-4853	142	143	78	78	NUM
cana-4853	142	144	%	%	NOUN
cana-4853	142	145	power	power	NOUN
cana-4853	142	146	savings.64×1	savings.64×1	PROPN
cana-4853	142	147	mux	mux	PROPN
cana-4853	142	148	&	&	CCONJ
cana-4853	142	149	1×64	1×64	NUM
cana-4853	142	150	demux	demux	NOUN
cana-4853	142	151	:	:	PUNCT
cana-4853	142	152	74	74	NUM
cana-4853	142	153	-	-	SYM
cana-4853	142	154	75	75	NUM
cana-4853	142	155	%	%	NOUN
cana-4853	142	156	fewer	few	ADJ
cana-4853	142	157	luts	luts	PROPN
cana-4853	142	158	/	/	SYM
cana-4853	142	159	ffs	ffs	PROPN
cana-4853	142	160	,	,	PUNCT
cana-4853	142	161	76.4	76.4	NUM
cana-4853	142	162	%	%	NOUN
cana-4853	142	163	power	power	NOUN
cana-4853	142	164	cut	cut	NOUN
cana-4853	142	165	,	,	PUNCT
cana-4853	142	166	and	and	CCONJ
cana-4853	142	167	the	the	DET
cana-4853	142	168	best	good	ADJ
cana-4853	142	169	pdp	pdp	PROPN
cana-4853	142	170	increase	increase	NOUN
cana-4853	142	171	(	(	PUNCT
cana-4853	142	172	53.7	53.7	NUM
cana-4853	142	173	%	%	NOUN
cana-4853	142	174	)	)	PUNCT
cana-4853	142	175	.	.	PUNCT
cana-4853	143	1	table	table	NOUN
cana-4853	143	2	2	2	NUM
cana-4853	143	3	:	:	PUNCT
cana-4853	143	4	compares	compare	VERB
cana-4853	143	5	various	various	ADJ
cana-4853	143	6	mux	mux	PROPN
cana-4853	143	7	/	/	SYM
cana-4853	143	8	demux	demux	PROPN
cana-4853	143	9	techniques	technique	NOUN
cana-4853	143	10	on	on	ADP
cana-4853	143	11	the	the	DET
cana-4853	143	12	kintex-7	kintex-7	PROPN
cana-4853	143	13	fpga	fpga	PROPN
cana-4853	143	14	based	base	VERB
cana-4853	143	15	on	on	ADP
cana-4853	143	16	lut	lut	PROPN
cana-4853	143	17	/	/	SYM
cana-4853	143	18	ff	ff	NOUN
cana-4853	143	19	usage	usage	NOUN
cana-4853	143	20	,	,	PUNCT
cana-4853	143	21	delay	delay	NOUN
cana-4853	143	22	,	,	PUNCT
cana-4853	143	23	power	power	NOUN
cana-4853	143	24	consumption	consumption	NOUN
cana-4853	143	25	,	,	PUNCT
cana-4853	143	26	and	and	CCONJ
cana-4853	143	27	power	power	NOUN
cana-4853	143	28	-	-	PUNCT
cana-4853	143	29	delay	delay	NOUN
cana-4853	143	30	product	product	NOUN
cana-4853	143	31	(	(	PUNCT
cana-4853	143	32	pdp	pdp	PROPN
cana-4853	143	33	)	)	PUNCT
cana-4853	143	34	.	.	PUNCT
cana-4853	144	1	kintex-7	kintex-7	VERB
cana-4853	144	2	size	size	NOUN
cana-4853	144	3	of	of	ADP
cana-4853	144	4	the	the	DET
cana-4853	144	5	mux	mux	PROPN
cana-4853	144	6	technique	technique	NOUN
cana-4853	144	7	lut	lut	PROPN
cana-4853	144	8	ff	ff	PROPN
cana-4853	144	9	total	total	NOUN
cana-4853	144	10	delay(ns	delay(ns	NOUN
cana-4853	144	11	)	)	PUNCT
cana-4853	144	12	total	total	ADJ
cana-4853	144	13	power	power	NOUN
cana-4853	144	14	(	(	PUNCT
cana-4853	144	15	mw	mw	PROPN
cana-4853	144	16	)	)	PUNCT
cana-4853	144	17	pdp(ns*mw	pdp(ns*mw	PROPN
cana-4853	144	18	)	)	PUNCT
cana-4853	144	19	4x1	4x1	NUM
cana-4853	144	20	mux	mux	PROPN
cana-4853	145	1	[	[	X
cana-4853	145	2	23	23	NUM
cana-4853	145	3	]	]	SYM
cana-4853	145	4	4	4	NUM
cana-4853	145	5	4	4	NUM
cana-4853	145	6	1.601	1.601	NUM
cana-4853	145	7	167.44	167.44	NUM
cana-4853	145	8	268.07	268.07	NUM
cana-4853	146	1	[	[	X
cana-4853	146	2	19	19	NUM
cana-4853	146	3	]	]	SYM
cana-4853	146	4	4	4	NUM
cana-4853	146	5	4	4	NUM
cana-4853	146	6	1.217	1.217	NUM
cana-4853	146	7	166.17	166.17	NUM
cana-4853	146	8	202.22	202.22	NUM
cana-4853	146	9	proposed	propose	VERB
cana-4853	146	10	4	4	NUM
cana-4853	146	11	4	4	NUM
cana-4853	146	12	1.217	1.217	NUM
cana-4853	146	13	166.08	166.08	NUM
cana-4853	146	14	202.11	202.11	NUM
cana-4853	146	15	1x4	1x4	NUM
cana-4853	146	16	demux	demux	NOUN
cana-4853	146	17	[	[	X
cana-4853	146	18	23	23	NUM
cana-4853	146	19	]	]	SYM
cana-4853	146	20	16	16	NUM
cana-4853	146	21	16	16	NUM
cana-4853	146	22	2.879	2.879	NUM
cana-4853	146	23	161.8	161.8	NUM
cana-4853	146	24	468.73	468.73	NUM
cana-4853	147	1	[	[	SYM
cana-4853	147	2	19	19	NUM
cana-4853	147	3	]	]	SYM
cana-4853	147	4	16	16	NUM
cana-4853	147	5	16	16	NUM
cana-4853	147	6	1.096	1.096	NUM
cana-4853	147	7	167.39	167.39	NUM
cana-4853	147	8	185.65	185.65	NUM
cana-4853	147	9	proposed	propose	VERB
cana-4853	147	10	4	4	NUM
cana-4853	147	11	4	4	NUM
cana-4853	147	12	1.166	1.166	NUM
cana-4853	147	13	158.13	158.13	NUM
cana-4853	147	14	184.37	184.37	NUM
cana-4853	147	15	16x1	16x1	NUM
cana-4853	147	16	mux	mux	NOUN
cana-4853	147	17	[	[	X
cana-4853	147	18	23	23	NUM
cana-4853	147	19	]	]	SYM
cana-4853	147	20	16	16	NUM
cana-4853	147	21	16	16	NUM
cana-4853	147	22	1.735	1.735	NUM
cana-4853	147	23	195.29	195.29	NUM
cana-4853	147	24	338.82	338.82	NUM
cana-4853	147	25	[	[	X
cana-4853	147	26	19	19	NUM
cana-4853	147	27	]	]	SYM
cana-4853	147	28	16	16	NUM
cana-4853	147	29	16	16	NUM
cana-4853	147	30	1.735	1.735	NUM
cana-4853	147	31	195.35	195.35	NUM
cana-4853	147	32	338.93	338.93	NUM
cana-4853	147	33	proposed	propose	VERB
cana-4853	147	34	4	4	NUM
cana-4853	147	35	4	4	NUM
cana-4853	147	36	1.668	1.668	NUM
cana-4853	147	37	167.36	167.36	NUM
cana-4853	147	38	279.15	279.15	NUM
cana-4853	147	39	1x16	1x16	NUM
cana-4853	147	40	demux	demux	NOUN
cana-4853	147	41	[	[	X
cana-4853	147	42	23	23	NUM
cana-4853	147	43	]	]	SYM
cana-4853	147	44	64	64	NUM
cana-4853	147	45	64	64	NUM
cana-4853	147	46	1.322	1.322	NUM
cana-4853	147	47	168.64	168.64	NUM
cana-4853	147	48	222.94	222.94	NUM
cana-4853	147	49	[	[	X
cana-4853	147	50	19	19	NUM
cana-4853	147	51	]	]	SYM
cana-4853	147	52	64	64	NUM
cana-4853	147	53	64	64	NUM
cana-4853	147	54	1.322	1.322	NUM
cana-4853	147	55	167.37	167.37	NUM
cana-4853	147	56	221.26	221.26	NUM
cana-4853	147	57	proposed	propose	VERB
cana-4853	147	58	16	16	NUM
cana-4853	147	59	16	16	NUM
cana-4853	147	60	1.27	1.27	NUM
cana-4853	147	61	160.42	160.42	NUM
cana-4853	147	62	203.73	203.73	NUM
cana-4853	147	63	32x1	32x1	NUM
cana-4853	147	64	mux	mux	PROPN
cana-4853	148	1	[	[	X
cana-4853	148	2	23	23	NUM
cana-4853	148	3	]	]	SYM
cana-4853	148	4	40	40	NUM
cana-4853	148	5	40	40	NUM
cana-4853	149	1	2.313	2.313	NUM
cana-4853	149	2	270.16	270.16	NUM
cana-4853	149	3	624.88	624.88	NUM
cana-4853	149	4	[	[	SYM
cana-4853	149	5	19	19	NUM
cana-4853	149	6	]	]	SYM
cana-4853	149	7	40	40	NUM
cana-4853	149	8	40	40	NUM
cana-4853	149	9	3.234	3.234	NUM
cana-4853	149	10	197.34	197.34	NUM
cana-4853	149	11	638.19	638.19	NUM
cana-4853	149	12	proposed	propose	VERB
cana-4853	149	13	10	10	NUM
cana-4853	149	14	10	10	NUM
cana-4853	149	15	2.223	2.223	NUM
cana-4853	149	16	176.27	176.27	NUM
cana-4853	149	17	399.84	399.84	NUM
cana-4853	149	18	1x32	1x32	NUM
cana-4853	149	19	demux	demux	NOUN
cana-4853	149	20	[	[	X
cana-4853	149	21	23	23	NUM
cana-4853	149	22	]	]	SYM
cana-4853	149	23	128	128	NUM
cana-4853	149	24	128	128	NUM
cana-4853	149	25	1.348	1.348	NUM
cana-4853	149	26	220.47	220.47	NUM
cana-4853	149	27	297.19	297.19	NUM
cana-4853	149	28	[	[	X
cana-4853	149	29	19	19	NUM
cana-4853	149	30	]	]	SYM
cana-4853	149	31	64	64	NUM
cana-4853	149	32	64	64	NUM
cana-4853	149	33	1.336	1.336	NUM
cana-4853	149	34	177.2	177.2	NUM
cana-4853	149	35	236.73	236.73	NUM
cana-4853	149	36	proposed	propose	VERB
cana-4853	149	37	32	32	NUM
cana-4853	149	38	32	32	NUM
cana-4853	149	39	1.33	1.33	NUM
cana-4853	149	40	164.96	164.96	NUM
cana-4853	149	41	219.39	219.39	NUM
cana-4853	149	42	64x1	64x1	NUM
cana-4853	149	43	mux	mux	NOUN
cana-4853	150	1	[	[	X
cana-4853	150	2	23	23	NUM
cana-4853	150	3	]	]	SYM
cana-4853	150	4	84	84	NUM
cana-4853	150	5	84	84	NUM
cana-4853	150	6	2.774	2.774	NUM
cana-4853	150	7	535.9	535.9	NUM
cana-4853	150	8	1486.58	1486.58	NUM
cana-4853	150	9	[	[	X
cana-4853	150	10	19	19	NUM
cana-4853	150	11	]	]	SYM
cana-4853	150	12	4	4	NUM
cana-4853	150	13	4	4	NUM
cana-4853	150	14	1.343	1.343	NUM
cana-4853	150	15	191.76	191.76	NUM
cana-4853	150	16	257.53	257.53	NUM
cana-4853	150	17	proposed	propose	VERB
cana-4853	150	18	21	21	NUM
cana-4853	150	19	21	21	NUM
cana-4853	150	20	2.722	2.722	NUM
cana-4853	150	21	166.57	166.57	NUM
cana-4853	150	22	453	453	NUM
cana-4853	150	23	1x64	1x64	NUM
cana-4853	150	24	demux	demux	NOUN
cana-4853	151	1	[	[	X
cana-4853	151	2	23	23	NUM
cana-4853	151	3	]	]	SYM
cana-4853	151	4	264	264	NUM
cana-4853	151	5	264	264	NUM
cana-4853	151	6	2.027	2.027	NUM
cana-4853	151	7	223.12	223.12	NUM
cana-4853	151	8	452.26	452.26	NUM
cana-4853	151	9	[	[	X
cana-4853	151	10	19	19	NUM
cana-4853	151	11	]	]	SYM
cana-4853	151	12	128	128	NUM
cana-4853	151	13	128	128	NUM
cana-4853	151	14	1.348	1.348	NUM
cana-4853	151	15	200.88	200.88	NUM
cana-4853	151	16	270.78	270.78	NUM
cana-4853	151	17	proposed	propose	VERB
cana-4853	151	18	68	68	NUM
cana-4853	151	19	68	68	NUM
cana-4853	151	20	1.467	1.467	NUM
cana-4853	151	21	165.37	165.37	NUM
cana-4853	151	22	242.59	242.59	NUM
cana-4853	151	23	5	5	NUM
cana-4853	151	24	.	.	PUNCT
cana-4853	152	1	conclusion	conclusion	NOUN
cana-4853	152	2	in	in	ADP
cana-4853	152	3	order	order	NOUN
cana-4853	152	4	to	to	PART
cana-4853	152	5	minimize	minimize	VERB
cana-4853	152	6	power	power	NOUN
cana-4853	152	7	,	,	PUNCT
cana-4853	152	8	delay	delay	NOUN
cana-4853	152	9	,	,	PUNCT
cana-4853	152	10	and	and	CCONJ
cana-4853	152	11	pdp	pdp	PROPN
cana-4853	152	12	,	,	PUNCT
cana-4853	152	13	the	the	DET
cana-4853	152	14	study	study	NOUN
cana-4853	152	15	optimizes	optimize	VERB
cana-4853	152	16	quaternary	quaternary	ADJ
cana-4853	152	17	reversible	reversible	ADJ
cana-4853	152	18	mux	mux	NOUN
cana-4853	152	19	(	(	PUNCT
cana-4853	152	20	4×1	4×1	PROPN
cana-4853	152	21	,	,	PUNCT
cana-4853	152	22	16×1	16×1	PROPN
cana-4853	152	23	,	,	PUNCT
cana-4853	152	24	32×1	32×1	PROPN
cana-4853	152	25	,	,	PUNCT
cana-4853	152	26	64×1	64×1	NUM
cana-4853	152	27	)	)	PUNCT
cana-4853	152	28	and	and	CCONJ
cana-4853	152	29	demux	demux	PROPN
cana-4853	152	30	(	(	PUNCT
cana-4853	152	31	1×4	1×4	NUM
cana-4853	152	32	,	,	PUNCT
cana-4853	152	33	1×16	1×16	NUM
cana-4853	152	34	,	,	PUNCT
cana-4853	152	35	1×32	1×32	NUM
cana-4853	152	36	,	,	PUNCT
cana-4853	152	37	1×64	1×64	NUM
cana-4853	152	38	)	)	PUNCT
cana-4853	152	39	on	on	ADP
cana-4853	152	40	artix-7	artix-7	NUM
cana-4853	152	41	and	and	CCONJ
cana-4853	152	42	kintex-7	kintex-7	PROPN
cana-4853	152	43	fpgas	fpgas	NOUN
cana-4853	152	44	.	.	PUNCT
cana-4853	153	1	the	the	DET
cana-4853	153	2	suggested	suggest	VERB
cana-4853	153	3	designs	design	NOUN
cana-4853	153	4	are	be	AUX
cana-4853	153	5	effective	effective	ADJ
cana-4853	153	6	for	for	ADP
cana-4853	153	7	low	low	ADJ
cana-4853	153	8	-	-	PUNCT
cana-4853	153	9	power	power	NOUN
cana-4853	153	10	digital	digital	ADJ
cana-4853	153	11	circuits	circuit	NOUN
cana-4853	153	12	,	,	PUNCT
cana-4853	153	13	alus	alus	ADJ
cana-4853	153	14	,	,	PUNCT
cana-4853	153	15	and	and	CCONJ
cana-4853	153	16	quantum	quantum	NOUN
cana-4853	153	17	computing	computing	NOUN
cana-4853	153	18	because	because	SCONJ
cana-4853	153	19	they	they	PRON
cana-4853	153	20	employ	employ	VERB
cana-4853	153	21	less	less	ADJ
cana-4853	153	22	luts	lut	NOUN
cana-4853	153	23	,	,	PUNCT
cana-4853	153	24	ffs	ffs	PROPN
cana-4853	153	25	,	,	PUNCT
cana-4853	153	26	and	and	CCONJ
cana-4853	153	27	pdp	pdp	PROPN
cana-4853	153	28	values	value	NOUN
cana-4853	153	29	.	.	PUNCT
cana-4853	154	1	communications	communication	NOUN
cana-4853	154	2	on	on	ADP
cana-4853	154	3	applied	apply	VERB
cana-4853	154	4	nonlinear	nonlinear	ADJ
cana-4853	154	5	analysis	analysis	NOUN
cana-4853	154	6	issn	issn	NOUN
cana-4853	154	7	:	:	PUNCT
cana-4853	154	8	1074	1074	NUM
cana-4853	154	9	-	-	PUNCT
cana-4853	154	10	133x	133x	NUM
cana-4853	154	11	vol	vol	VERB
cana-4853	154	12	32	32	NUM
cana-4853	154	13	no	no	NOUN
cana-4853	154	14	.	.	PUNCT
cana-4853	155	1	10s	10	NOUN
cana-4853	155	2	(	(	PUNCT
cana-4853	155	3	2025	2025	NUM
cana-4853	155	4	)	)	PUNCT
cana-4853	155	5	660	660	NUM
cana-4853	155	6	https://internationalpubls.com	https://internationalpubls.com	X
cana-4853	155	7	table	table	NOUN
cana-4853	155	8	3	3	NUM
cana-4853	155	9	:	:	PUNCT
cana-4853	155	10	compares	compare	VERB
cana-4853	155	11	various	various	ADJ
cana-4853	155	12	mux	mux	PROPN
cana-4853	155	13	/	/	SYM
cana-4853	155	14	demux	demux	PROPN
cana-4853	155	15	techniques	technique	NOUN
cana-4853	155	16	on	on	ADP
cana-4853	155	17	the	the	DET
cana-4853	155	18	artix-7	artix-7	NUM
cana-4853	155	19	fpga	fpga	NOUN
cana-4853	155	20	based	base	VERB
cana-4853	155	21	on	on	ADP
cana-4853	155	22	lut	lut	PROPN
cana-4853	155	23	/	/	SYM
cana-4853	155	24	ffusage	ffusage	NOUN
cana-4853	155	25	,	,	PUNCT
cana-4853	155	26	delay	delay	NOUN
cana-4853	155	27	,	,	PUNCT
cana-4853	155	28	power	power	NOUN
cana-4853	155	29	consumption	consumption	NOUN
cana-4853	155	30	,	,	PUNCT
cana-4853	155	31	and	and	CCONJ
cana-4853	155	32	power	power	NOUN
cana-4853	155	33	-	-	PUNCT
cana-4853	155	34	delay	delay	NOUN
cana-4853	155	35	product	product	NOUN
cana-4853	155	36	(	(	PUNCT
cana-4853	155	37	pdp	pdp	PROPN
cana-4853	155	38	)	)	PUNCT
cana-4853	155	39	.	.	PUNCT
cana-4853	156	1	artix-7	artix-7	NUM
cana-4853	156	2	size	size	NOUN
cana-4853	156	3	of	of	ADP
cana-4853	156	4	the	the	DET
cana-4853	156	5	mux	mux	PROPN
cana-4853	156	6	technique	technique	NOUN
cana-4853	156	7	lut	lut	PROPN
cana-4853	156	8	ff	ff	PROPN
cana-4853	156	9	pdp(ns*mw	pdp(ns*mw	PROPN
cana-4853	156	10	)	)	PUNCT
cana-4853	156	11	total	total	ADJ
cana-4853	156	12	total	total	ADJ
cana-4853	156	13	4x1	4x1	NUM
cana-4853	156	14	mux	mux	PROPN
cana-4853	157	1	[	[	X
cana-4853	157	2	23	23	NUM
cana-4853	157	3	]	]	SYM
cana-4853	157	4	4	4	NUM
cana-4853	157	5	4	4	NUM
cana-4853	157	6	2.233	2.233	NUM
cana-4853	157	7	94.5	94.5	NUM
cana-4853	157	8	211.01	211.01	NUM
cana-4853	157	9	[	[	X
cana-4853	157	10	19	19	NUM
cana-4853	157	11	]	]	SYM
cana-4853	157	12	4	4	NUM
cana-4853	157	13	4	4	NUM
cana-4853	157	14	1.207	1.207	NUM
cana-4853	157	15	91.66	91.66	NUM
cana-4853	157	16	110.63	110.63	NUM
cana-4853	157	17	proposed	propose	VERB
cana-4853	157	18	4	4	NUM
cana-4853	157	19	4	4	NUM
cana-4853	157	20	1.207	1.207	NUM
cana-4853	157	21	91.61	91.61	NUM
cana-4853	157	22	110.57	110.57	NUM
cana-4853	157	23	1x4	1x4	NUM
cana-4853	157	24	demux	demux	NOUN
cana-4853	157	25	[	[	X
cana-4853	157	26	23	23	NUM
cana-4853	157	27	]	]	SYM
cana-4853	157	28	16	16	NUM
cana-4853	157	29	16	16	NUM
cana-4853	157	30	2.019	2.019	NUM
cana-4853	157	31	88.24	88.24	NUM
cana-4853	157	32	178.15	178.15	NUM
cana-4853	157	33	[	[	X
cana-4853	157	34	19	19	NUM
cana-4853	157	35	]	]	SYM
cana-4853	157	36	16	16	NUM
cana-4853	157	37	16	16	NUM
cana-4853	157	38	1.092	1.092	NUM
cana-4853	157	39	85.89	85.89	NUM
cana-4853	157	40	93.79	93.79	NUM
cana-4853	157	41	proposed	propose	VERB
cana-4853	157	42	4	4	NUM
cana-4853	157	43	4	4	NUM
cana-4853	157	44	1.025	1.025	NUM
cana-4853	157	45	83.7	83.7	NUM
cana-4853	157	46	85.79	85.79	NUM
cana-4853	157	47	16x1	16x1	NUM
cana-4853	157	48	mux	mux	PROPN
cana-4853	158	1	[	[	X
cana-4853	158	2	23	23	NUM
cana-4853	158	3	]	]	SYM
cana-4853	158	4	16	16	NUM
cana-4853	158	5	16	16	NUM
cana-4853	158	6	1.771	1.771	NUM
cana-4853	158	7	125.44	125.44	NUM
cana-4853	158	8	222.15	222.15	NUM
cana-4853	158	9	[	[	X
cana-4853	158	10	19	19	NUM
cana-4853	158	11	]	]	SYM
cana-4853	158	12	16	16	NUM
cana-4853	158	13	16	16	NUM
cana-4853	158	14	1.771	1.771	NUM
cana-4853	158	15	125.96	125.96	NUM
cana-4853	158	16	223.07	223.07	NUM
cana-4853	158	17	proposed	propose	VERB
cana-4853	158	18	4	4	NUM
cana-4853	158	19	4	4	NUM
cana-4853	158	20	1.704	1.704	NUM
cana-4853	158	21	92.85	92.85	NUM
cana-4853	158	22	158.21	158.21	NUM
cana-4853	158	23	1x16	1x16	NUM
cana-4853	158	24	demux	demux	NOUN
cana-4853	159	1	[	[	X
cana-4853	159	2	23	23	NUM
cana-4853	159	3	]	]	SYM
cana-4853	159	4	64	64	NUM
cana-4853	159	5	64	64	NUM
cana-4853	159	6	1.316	1.316	NUM
cana-4853	159	7	95.86	95.86	NUM
cana-4853	159	8	126.15	126.15	NUM
cana-4853	160	1	[	[	X
cana-4853	160	2	19	19	NUM
cana-4853	160	3	]	]	SYM
cana-4853	160	4	64	64	NUM
cana-4853	160	5	64	64	NUM
cana-4853	160	6	1.316	1.316	NUM
cana-4853	160	7	95.99	95.99	NUM
cana-4853	160	8	126.32	126.32	NUM
cana-4853	160	9	proposed	propose	VERB
cana-4853	160	10	16	16	NUM
cana-4853	160	11	16	16	NUM
cana-4853	160	12	1.264	1.264	NUM
cana-4853	160	13	85.94	85.94	NUM
cana-4853	160	14	108.62	108.62	NUM
cana-4853	160	15	32x1	32x1	NUM
cana-4853	160	16	mux	mux	PROPN
cana-4853	161	1	[	[	X
cana-4853	161	2	23	23	NUM
cana-4853	161	3	]	]	SYM
cana-4853	161	4	40	40	NUM
cana-4853	161	5	40	40	NUM
cana-4853	161	6	2.312	2.312	NUM
cana-4853	161	7	172.41	172.41	NUM
cana-4853	161	8	398.61	398.61	NUM
cana-4853	161	9	[	[	SYM
cana-4853	161	10	19	19	NUM
cana-4853	161	11	]	]	SYM
cana-4853	161	12	40	40	NUM
cana-4853	161	13	40	40	NUM
cana-4853	161	14	3.241	3.241	NUM
cana-4853	161	15	128.39	128.39	NUM
cana-4853	161	16	114.11	114.11	NUM
cana-4853	161	17	proposed	propose	VERB
cana-4853	161	18	10	10	NUM
cana-4853	161	19	10	10	NUM
cana-4853	161	20	2.222	2.222	NUM
cana-4853	161	21	101.86	101.86	NUM
cana-4853	161	22	226.86	226.86	NUM
cana-4853	161	23	1x32	1x32	NUM
cana-4853	161	24	demux	demux	NOUN
cana-4853	161	25	[	[	X
cana-4853	161	26	23	23	NUM
cana-4853	161	27	]	]	SYM
cana-4853	161	28	128	128	NUM
cana-4853	161	29	128	128	NUM
cana-4853	161	30	1.338	1.338	NUM
cana-4853	161	31	117.4	117.4	NUM
cana-4853	161	32	157.08	157.08	NUM
cana-4853	161	33	[	[	SYM
cana-4853	161	34	19	19	NUM
cana-4853	161	35	]	]	SYM
cana-4853	161	36	64	64	NUM
cana-4853	161	37	64	64	NUM
cana-4853	161	38	1.326	1.326	NUM
cana-4853	161	39	106.16	106.16	NUM
cana-4853	161	40	140.76	140.76	NUM
cana-4853	161	41	proposed	propose	VERB
cana-4853	161	42	32	32	NUM
cana-4853	161	43	32	32	NUM
cana-4853	161	44	1.32	1.32	NUM
cana-4853	161	45	90.41	90.41	NUM
cana-4853	161	46	119.34	119.34	NUM
cana-4853	161	47	64x1	64x1	NUM
cana-4853	161	48	mux	mux	NOUN
cana-4853	162	1	[	[	X
cana-4853	162	2	23	23	NUM
cana-4853	162	3	]	]	SYM
cana-4853	162	4	84	84	NUM
cana-4853	162	5	84	84	NUM
cana-4853	162	6	2.752	2.752	NUM
cana-4853	162	7	266.28	266.28	NUM
cana-4853	162	8	732.8	732.8	NUM
cana-4853	163	1	[	[	X
cana-4853	163	2	19	19	NUM
cana-4853	163	3	]	]	SYM
cana-4853	163	4	64	64	NUM
cana-4853	163	5	64	64	NUM
cana-4853	163	6	1.364	1.364	NUM
cana-4853	163	7	117.31	117.31	NUM
cana-4853	163	8	160.01	160.01	NUM
cana-4853	163	9	proposed	propose	VERB
cana-4853	163	10	21	21	NUM
cana-4853	163	11	21	21	NUM
cana-4853	163	12	2.7	2.7	NUM
cana-4853	163	13	125.48	125.48	NUM
cana-4853	163	14	338.79	338.79	NUM
cana-4853	163	15	1x64	1x64	NUM
cana-4853	163	16	demux	demux	NOUN
cana-4853	164	1	[	[	X
cana-4853	164	2	23	23	NUM
cana-4853	164	3	]	]	SYM
cana-4853	164	4	264	264	NUM
cana-4853	164	5	264	264	NUM
cana-4853	164	6	2.017	2.017	NUM
cana-4853	164	7	113.97	113.97	NUM
cana-4853	164	8	229.87	229.87	NUM
cana-4853	164	9	[	[	SYM
cana-4853	164	10	19	19	NUM
cana-4853	164	11	]	]	SYM
cana-4853	164	12	128	128	NUM
cana-4853	164	13	128	128	NUM
cana-4853	164	14	1.338	1.338	NUM
cana-4853	164	15	122.79	122.79	NUM
cana-4853	164	16	164.29	164.29	NUM
cana-4853	164	17	proposed	propose	VERB
cana-4853	164	18	68	68	NUM
cana-4853	164	19	68	68	NUM
cana-4853	164	20	1.384	1.384	NUM
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cana-4853	164	22	127.93	127.93	NUM
cana-4853	164	23	references	reference	NOUN
cana-4853	164	24	[	[	X
cana-4853	164	25	1	1	NUM
cana-4853	164	26	]	]	PUNCT
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cana-4853	164	28	a.	a.	PROPN
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cana-4853	164	31	i.	i.	PROPN
cana-4853	164	32	l.	l.	PROPN
cana-4853	164	33	chuang	chuang	PROPN
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cana-4853	164	35	quantum	quantum	ADJ
cana-4853	164	36	computation	computation	NOUN
cana-4853	164	37	and	and	CCONJ
cana-4853	164	38	quantum	quantum	NOUN
cana-4853	164	39	information	information	NOUN
cana-4853	164	40	,	,	PUNCT
cana-4853	164	41	vol	vol	NOUN
cana-4853	164	42	.	.	PROPN
cana-4853	165	1	2	2	NUM
cana-4853	165	2	,	,	PUNCT
cana-4853	165	3	no	no	INTJ
cana-4853	165	4	.	.	NOUN
cana-4853	165	5	8	8	NUM
cana-4853	165	6	.	.	X
cana-4853	166	1	cambridge	cambridge	PROPN
cana-4853	166	2	,	,	PUNCT
cana-4853	166	3	u.k	u.k	PROPN
cana-4853	166	4	.	.	PROPN
cana-4853	166	5	:	:	PUNCT
cana-4853	167	1	cambridge	cambridge	PROPN
cana-4853	167	2	univ	univ	PROPN
cana-4853	167	3	.	.	PUNCT
cana-4853	168	1	press	press	PROPN
cana-4853	168	2	,	,	PUNCT
cana-4853	168	3	2000,p	2000,p	NOUN
cana-4853	168	4	.	.	PUNCT
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cana-4853	168	6	.	.	PUNCT
cana-4853	169	1	[	[	X
cana-4853	169	2	2	2	NUM
cana-4853	169	3	]	]	PUNCT
cana-4853	169	4	l.	l.	PROPN
cana-4853	169	5	k.	k.	PROPN
cana-4853	169	6	grover	grover	PROPN
cana-4853	169	7	,	,	PUNCT
cana-4853	169	8	‘	'	PUNCT
cana-4853	169	9	‘	'	PUNCT
cana-4853	169	10	a	a	DET
cana-4853	169	11	fast	fast	ADJ
cana-4853	169	12	quantum	quantum	ADJ
cana-4853	169	13	mechanical	mechanical	ADJ
cana-4853	169	14	algorithm	algorithm	NOUN
cana-4853	169	15	for	for	ADP
cana-4853	169	16	database	database	NOUN
cana-4853	169	17	search	search	NOUN
cana-4853	169	18	,	,	PUNCT
cana-4853	169	19	’’	’'	PUNCT
cana-4853	169	20	in	in	ADP
cana-4853	169	21	proc	proc	NOUN
cana-4853	169	22	.	.	PUNCT
cana-4853	170	1	28th	28th	ADJ
cana-4853	170	2	annu	annu	NOUN
cana-4853	170	3	.	.	PUNCT
cana-4853	170	4	acm	acm	PROPN
cana-4853	170	5	symp	symp	PROPN
cana-4853	170	6	.	.	PUNCT
cana-4853	171	1	theory	theory	NOUN
cana-4853	171	2	comput	comput	NOUN
cana-4853	171	3	.	.	PUNCT
cana-4853	172	1	(	(	PUNCT
cana-4853	172	2	stoc	stoc	NOUN
cana-4853	172	3	)	)	PUNCT
cana-4853	172	4	,	,	PUNCT
cana-4853	172	5	jul	jul	PROPN
cana-4853	172	6	.	.	PROPN
cana-4853	173	1	1996,pp	1996,pp	NUM
cana-4853	173	2	.	.	PUNCT
cana-4853	174	1	212–219	212–219	NUM
cana-4853	174	2	.	.	PUNCT
cana-4853	175	1	[	[	X
cana-4853	175	2	3	3	NUM
cana-4853	175	3	]	]	X
cana-4853	175	4	m.	m.	PROPN
cana-4853	175	5	boyer	boyer	PROPN
cana-4853	175	6	,	,	PUNCT
cana-4853	175	7	g.	g.	PROPN
cana-4853	175	8	brassard	brassard	PROPN
cana-4853	175	9	,	,	PUNCT
cana-4853	175	10	p.	p.	NOUN
cana-4853	175	11	høyer	høyer	PROPN
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cana-4853	175	14	a.	a.	PROPN
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cana-4853	175	17	‘	'	PUNCT
cana-4853	175	18	‘	'	PUNCT
cana-4853	175	19	tight	tight	ADJ
cana-4853	175	20	bounds	bound	NOUN
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cana-4853	175	24	,	,	PUNCT
cana-4853	175	25	’’	’'	PUNCT
cana-4853	175	26	fortschritte	fortschritte	NOUN
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cana-4853	175	28	.	.	PUNCT
cana-4853	175	29	,	,	PUNCT
cana-4853	175	30	progr	progr	NOUN
cana-4853	175	31	.	.	PUNCT
cana-4853	176	1	phys	phy	NOUN
cana-4853	176	2	.	.	PUNCT
cana-4853	176	3	,	,	PUNCT
cana-4853	176	4	vol	vol	NOUN
cana-4853	176	5	.	.	PROPN
cana-4853	176	6	46	46	NUM
cana-4853	176	7	,	,	PUNCT
cana-4853	176	8	nos	nos	X
cana-4853	176	9	.	.	PUNCT
cana-4853	177	1	4–5,pp	4–5,pp	NUM
cana-4853	177	2	.	.	PUNCT
cana-4853	178	1	493–505	493–505	NUM
cana-4853	178	2	,	,	PUNCT
cana-4853	178	3	apr	apr	PROPN
cana-4853	178	4	.	.	PROPN
cana-4853	178	5	1998	1998	NUM
cana-4853	178	6	.	.	PUNCT
cana-4853	179	1	[	[	X
cana-4853	179	2	4	4	NUM
cana-4853	179	3	]	]	X
cana-4853	179	4	c.	c.	PROPN
cana-4853	179	5	zalka	zalka	PROPN
cana-4853	179	6	,	,	PUNCT
cana-4853	179	7	‘	'	PUNCT
cana-4853	179	8	‘	'	PUNCT
cana-4853	179	9	grover	grover	NOUN
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cana-4853	179	11	quantum	quantum	NOUN
cana-4853	179	12	searching	searching	NOUN
cana-4853	179	13	algorithm	algorithm	NOUN
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cana-4853	179	16	,	,	PUNCT
cana-4853	179	17	’’	’'	PUNCT
cana-4853	179	18	phys	phy	NOUN
cana-4853	179	19	.	.	PUNCT
cana-4853	180	1	rev	rev	PROPN
cana-4853	180	2	.	.	PROPN
cana-4853	181	1	a	a	DET
cana-4853	181	2	,	,	PUNCT
cana-4853	181	3	gen	gen	PROPN
cana-4853	181	4	.	.	PROPN
cana-4853	181	5	phys	phys	PROPN
cana-4853	181	6	.	.	PUNCT
cana-4853	181	7	,	,	PUNCT
cana-4853	181	8	vol	vol	NOUN
cana-4853	181	9	.	.	PROPN
cana-4853	181	10	60	60	NUM
cana-4853	181	11	,	,	PUNCT
cana-4853	181	12	no	no	INTJ
cana-4853	181	13	.	.	NOUN
cana-4853	181	14	4	4	NUM
cana-4853	181	15	,	,	PUNCT
cana-4853	181	16	p.	p.	NOUN
cana-4853	181	17	2746	2746	NUM
cana-4853	181	18	,	,	PUNCT
cana-4853	181	19	oct	oct	PROPN
cana-4853	181	20	.	.	PROPN
cana-4853	181	21	1999	1999	NUM
cana-4853	181	22	.	.	PUNCT
cana-4853	182	1	[	[	X
cana-4853	182	2	5	5	X
cana-4853	182	3	]	]	PUNCT
cana-4853	182	4	z.	z.	PROPN
cana-4853	182	5	t.	t.	PROPN
cana-4853	182	6	sandhie	sandhie	PROPN
cana-4853	182	7	,	,	PUNCT
cana-4853	182	8	j.	j.	PROPN
cana-4853	182	9	a.	a.	PROPN
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cana-4853	182	11	,	,	PUNCT
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cana-4853	182	13	u.	u.	PROPN
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cana-4853	182	21	‘	'	PUNCT
cana-4853	182	22	‘	'	PUNCT
cana-4853	182	23	investigation	investigation	NOUN
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cana-4853	182	25	multiplevalued	multiplevalue	VERB
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cana-4853	182	37	.	.	PUNCT
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cana-4853	186	7	:	:	PUNCT
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cana-4853	187	1	10s	10	NOUN
cana-4853	187	2	(	(	PUNCT
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cana-4853	187	4	)	)	PUNCT
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cana-4853	188	12	‘	'	PUNCT
cana-4853	188	13	‘	'	PUNCT
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cana-4853	188	17	3state	3state	NUM
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cana-4853	188	19	,	,	PUNCT
cana-4853	188	20	’’	’'	PUNCT
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cana-4853	189	7	.	.	PROPN
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cana-4853	189	13	,	,	PUNCT
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cana-4853	189	15	.	.	PUNCT
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cana-4853	190	2	,	,	PUNCT
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cana-4853	190	4	.	.	PROPN
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cana-4853	190	6	.	.	PUNCT
cana-4853	191	1	[	[	X
cana-4853	191	2	7	7	X
cana-4853	191	3	]	]	X
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cana-4853	191	11	g.	g.	PROPN
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cana-4853	191	13	,	,	PUNCT
cana-4853	191	14	‘	'	PUNCT
cana-4853	191	15	‘	'	PUNCT
cana-4853	191	16	quantum	quantum	ADJ
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cana-4853	191	21	encoding	encoding	NOUN
cana-4853	191	22	,	,	PUNCT
cana-4853	191	23	’’	’'	PUNCT
cana-4853	191	24	phys	phy	NOUN
cana-4853	191	25	.	.	PUNCT
cana-4853	192	1	rev	rev	PROPN
cana-4853	192	2	.	.	PROPN
cana-4853	193	1	a	a	DET
cana-4853	193	2	,	,	PUNCT
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cana-4853	193	4	.	.	PROPN
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cana-4853	193	7	,	,	PUNCT
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cana-4853	193	9	.	.	PROPN
cana-4853	194	1	64	64	NUM
cana-4853	194	2	,	,	PUNCT
cana-4853	194	3	no	no	INTJ
cana-4853	194	4	.	.	NOUN
cana-4853	194	5	1	1	NUM
cana-4853	194	6	,	,	PUNCT
cana-4853	194	7	jun	jun	PROPN
cana-4853	194	8	.	.	PROPN
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cana-4853	194	10	,	,	PUNCT
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cana-4853	194	12	.	.	PUNCT
cana-4853	195	1	no	no	INTJ
cana-4853	195	2	.	.	NOUN
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cana-4853	195	4	.	.	PUNCT
cana-4853	196	1	[	[	X
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cana-4853	196	3	]	]	X
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cana-4853	196	10	,	,	PUNCT
cana-4853	196	11	‘	'	PUNCT
cana-4853	196	12	‘	'	PUNCT
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cana-4853	196	22	protocols	protocol	NOUN
cana-4853	196	23	,	,	PUNCT
cana-4853	196	24	’’	’'	PUNCT
cana-4853	196	25	phys	phy	NOUN
cana-4853	196	26	.	.	PUNCT
cana-4853	196	27	rev	rev	PROPN
cana-4853	196	28	.	.	PROPN
cana-4853	197	1	a	a	DET
cana-4853	197	2	,	,	PUNCT
cana-4853	197	3	gen	gen	PROPN
cana-4853	197	4	.	.	PROPN
cana-4853	197	5	phys	phys	PROPN
cana-4853	197	6	.	.	PUNCT
cana-4853	197	7	,	,	PUNCT
cana-4853	197	8	vol	vol	NOUN
cana-4853	197	9	.	.	PROPN
cana-4853	197	10	65	65	NUM
cana-4853	197	11	,	,	PUNCT
cana-4853	197	12	no	no	INTJ
cana-4853	197	13	.	.	NOUN
cana-4853	197	14	1	1	NUM
cana-4853	197	15	,	,	PUNCT
cana-4853	197	16	dec	dec	PROPN
cana-4853	197	17	.	.	PROPN
cana-4853	197	18	2001	2001	NUM
cana-4853	197	19	,	,	PUNCT
cana-4853	197	20	art	art	NOUN
cana-4853	197	21	.	.	PUNCT
cana-4853	198	1	no	no	INTJ
cana-4853	198	2	.	.	NOUN
cana-4853	198	3	012310	012310	NUM
cana-4853	198	4	.	.	PUNCT
cana-4853	199	1	[	[	X
cana-4853	199	2	9	9	NUM
cana-4853	199	3	]	]	X
cana-4853	199	4	d.	d.	PROPN
cana-4853	199	5	greentree	greentree	PROPN
cana-4853	199	6	,	,	PUNCT
cana-4853	199	7	s.	s.	PROPN
cana-4853	199	8	g.	g.	PROPN
cana-4853	199	9	schirmer	schirmer	PROPN
cana-4853	199	10	,	,	PUNCT
cana-4853	199	11	f.	f.	PROPN
cana-4853	199	12	green	green	PROPN
cana-4853	199	13	,	,	PUNCT
cana-4853	199	14	l.	l.	PROPN
cana-4853	199	15	c.	c.	PROPN
cana-4853	199	16	l.	l.	PROPN
cana-4853	199	17	hollenberg	hollenberg	PROPN
cana-4853	199	18	,	,	PUNCT
cana-4853	199	19	a.	a.	PROPN
cana-4853	199	20	r.	r.	PROPN
cana-4853	199	21	hamilton	hamilton	PROPN
cana-4853	199	22	,	,	PUNCT
cana-4853	199	23	and	and	CCONJ
cana-4853	199	24	r.	r.	PROPN
cana-4853	199	25	g.	g.	PROPN
cana-4853	199	26	clark	clark	PROPN
cana-4853	199	27	,	,	PUNCT
cana-4853	199	28	‘	'	PUNCT
cana-4853	199	29	‘	'	PUNCT
cana-4853	199	30	maximizing	maximize	VERB
cana-4853	199	31	the	the	DET
cana-4853	199	32	hilbert	hilbert	NOUN
cana-4853	199	33	space	space	NOUN
cana-4853	199	34	for	for	ADP
cana-4853	199	35	a	a	DET
cana-4853	199	36	finite	finite	ADJ
cana-4853	199	37	number	number	NOUN
cana-4853	199	38	of	of	ADP
cana-4853	199	39	distinguishable	distinguishable	ADJ
cana-4853	199	40	quantum	quantum	ADJ
cana-4853	199	41	states,’phys	states,’phy	NOUN
cana-4853	199	42	.	.	PUNCT
cana-4853	199	43	rev	rev	PROPN
cana-4853	199	44	.	.	PROPN
cana-4853	199	45	lett	lett	PROPN
cana-4853	199	46	.	.	PROPN
cana-4853	199	47	,	,	PUNCT
cana-4853	199	48	vol	vol	NOUN
cana-4853	199	49	.	.	PROPN
cana-4853	200	1	92	92	NUM
cana-4853	200	2	,	,	PUNCT
cana-4853	200	3	no	no	INTJ
cana-4853	200	4	.	.	NOUN
cana-4853	200	5	9	9	NUM
cana-4853	200	6	,	,	PUNCT
cana-4853	200	7	mar	mar	PROPN
cana-4853	200	8	.	.	PROPN
cana-4853	200	9	2004	2004	NUM
cana-4853	200	10	,	,	PUNCT
cana-4853	200	11	art	art	NOUN
cana-4853	200	12	.	.	PUNCT
cana-4853	201	1	no	no	INTJ
cana-4853	201	2	.	.	NOUN
cana-4853	201	3	097901	097901	NUM
cana-4853	201	4	.	.	PUNCT
cana-4853	202	1	[	[	X
cana-4853	202	2	10	10	NUM
cana-4853	202	3	]	]	X
cana-4853	202	4	d.	d.	PROPN
cana-4853	202	5	bundalo	bundalo	PROPN
cana-4853	202	6	,	,	PUNCT
cana-4853	202	7	z.	z.	PROPN
cana-4853	202	8	bundalo	bundalo	PROPN
cana-4853	202	9	,	,	PUNCT
cana-4853	202	10	and	and	CCONJ
cana-4853	202	11	b.	b.	PROPN
cana-4853	202	12	dordević	dordević	PROPN
cana-4853	202	13	,	,	PUNCT
cana-4853	202	14	‘	'	PUNCT
cana-4853	202	15	‘	'	PUNCT
cana-4853	202	16	design	design	NOUN
cana-4853	202	17	of	of	ADP
cana-4853	202	18	quaternary	quaternary	ADJ
cana-4853	202	19	logic	logic	NOUN
cana-4853	202	20	systems	system	NOUN
cana-4853	202	21	and	and	CCONJ
cana-4853	202	22	circuits	circuit	NOUN
cana-4853	202	23	,	,	PUNCT
cana-4853	202	24	’’	’'	PUNCT
cana-4853	202	25	facta	facta	PROPN
cana-4853	202	26	universitatis	universitatis	PROPN
cana-4853	202	27	,	,	PUNCT
cana-4853	202	28	electron	electron	NOUN
cana-4853	202	29	.	.	PUNCT
cana-4853	203	1	energetics	energetics	PROPN
cana-4853	203	2	.	.	PUNCT
cana-4853	203	3	,	,	PUNCT
cana-4853	203	4	vol	vol	NOUN
cana-4853	203	5	.	.	PROPN
cana-4853	203	6	18	18	NUM
cana-4853	203	7	,	,	PUNCT
cana-4853	203	8	no	no	INTJ
cana-4853	203	9	.	.	NOUN
cana-4853	203	10	1	1	NUM
cana-4853	203	11	,	,	PUNCT
cana-4853	203	12	pp	pp	ADJ
cana-4853	203	13	.	.	PUNCT
cana-4853	204	1	45–56	45–56	NUM
cana-4853	204	2	.	.	PUNCT
cana-4853	205	1	2005	2005	NUM
cana-4853	205	2	.	.	PUNCT
cana-4853	206	1	[	[	X
cana-4853	206	2	11	11	NUM
cana-4853	206	3	]	]	PUNCT
cana-4853	206	4	m.-a	m.-a	NOUN
cana-4853	206	5	.	.	PUNCT
cana-4853	207	1	asadi	asadi	PROPN
cana-4853	207	2	,	,	PUNCT
cana-4853	207	3	m.	m.	NOUN
cana-4853	207	4	mosleh	mosleh	NOUN
cana-4853	207	5	,	,	PUNCT
cana-4853	207	6	and	and	CCONJ
cana-4853	207	7	m.	m.	NOUN
cana-4853	207	8	haghparast	haghparast	NOUN
cana-4853	207	9	,	,	PUNCT
cana-4853	207	10	‘	'	PUNCT
cana-4853	207	11	‘	'	PUNCT
cana-4853	207	12	a	a	DET
cana-4853	207	13	novel	novel	ADJ
cana-4853	207	14	reversible	reversible	ADJ
cana-4853	207	15	ternary	ternary	NOUN
cana-4853	207	16	coded	code	VERB
cana-4853	207	17	decimal	decimal	ADJ
cana-4853	207	18	adder	adder	NOUN
cana-4853	207	19	/	/	SYM
cana-4853	207	20	subtractor	subtractor	NOUN
cana-4853	207	21	,	,	PUNCT
cana-4853	207	22	’’	’'	PUNCT
cana-4853	207	23	j.	j.	PROPN
cana-4853	207	24	ambient	ambient	PROPN
cana-4853	207	25	intell	intell	PROPN
cana-4853	207	26	.	.	PUNCT
cana-4853	208	1	humanized	humanize	VERB
cana-4853	208	2	comput	comput	NOUN
cana-4853	208	3	.	.	PUNCT
cana-4853	208	4	,	,	PUNCT
cana-4853	208	5	vol	vol	NOUN
cana-4853	208	6	.	.	PROPN
cana-4853	208	7	12	12	NUM
cana-4853	208	8	,	,	PUNCT
cana-4853	208	9	no	no	INTJ
cana-4853	208	10	.	.	NOUN
cana-4853	208	11	7	7	NUM
cana-4853	208	12	,	,	PUNCT
cana-4853	208	13	pp	pp	ADJ
cana-4853	208	14	.	.	PUNCT
cana-4853	209	1	7745–7763	7745–7763	NUM
cana-4853	209	2	,	,	PUNCT
cana-4853	209	3	jul	jul	PROPN
cana-4853	209	4	.	.	PROPN
cana-4853	209	5	2021	2021	NUM
cana-4853	209	6	.	.	PUNCT
cana-4853	210	1	[	[	X
cana-4853	210	2	12	12	NUM
cana-4853	210	3	]	]	X
cana-4853	210	4	s.	s.	PROPN
cana-4853	210	5	m.	m.	PROPN
cana-4853	210	6	ghadamgahi	ghadamgahi	PROPN
cana-4853	210	7	,	,	PUNCT
cana-4853	210	8	r.	r.	PROPN
cana-4853	210	9	sabbaghi	sabbaghi	PROPN
cana-4853	210	10	-	-	PUNCT
cana-4853	210	11	nadooshan	nadooshan	PROPN
cana-4853	210	12	,	,	PUNCT
cana-4853	210	13	and	and	CCONJ
cana-4853	210	14	k.	k.	PROPN
cana-4853	210	15	navi	navi	PROPN
cana-4853	210	16	,	,	PUNCT
cana-4853	210	17	‘	'	PUNCT
cana-4853	210	18	‘	'	PUNCT
cana-4853	210	19	novel	novel	ADJ
cana-4853	210	20	ternary	ternary	ADJ
cana-4853	210	21	adders	adder	NOUN
cana-4853	210	22	and	and	CCONJ
cana-4853	210	23	subtractors	subtractor	NOUN
cana-4853	210	24	in	in	ADP
cana-4853	210	25	quantum	quantum	ADJ
cana-4853	210	26	cellular	cellular	ADJ
cana-4853	210	27	automata	automata	NOUN
cana-4853	210	28	,	,	PUNCT
cana-4853	210	29	’’	’'	PUNCT
cana-4853	210	30	j.	j.	PROPN
cana-4853	210	31	supercomputing	supercomputing	PROPN
cana-4853	210	32	.	.	PROPN
cana-4853	210	33	,	,	PUNCT
cana-4853	210	34	vol	vol	NOUN
cana-4853	210	35	.	.	PROPN
cana-4853	210	36	78	78	NUM
cana-4853	210	37	,	,	PUNCT
cana-4853	210	38	pp	pp	ADJ
cana-4853	210	39	.	.	PUNCT
cana-4853	211	1	1–43	1–43	INTJ
cana-4853	211	2	.	.	PUNCT
cana-4853	212	1	jun	jun	PROPN
cana-4853	212	2	.	.	PROPN
cana-4853	212	3	2022	2022	NUM
cana-4853	212	4	.	.	PUNCT
cana-4853	213	1	[	[	X
cana-4853	213	2	13	13	NUM
cana-4853	213	3	]	]	PUNCT
cana-4853	213	4	a.	a.	NOUN
cana-4853	213	5	t.	t.	PROPN
cana-4853	213	6	monfared	monfare	VERB
cana-4853	213	7	and	and	CCONJ
cana-4853	213	8	m.	m.	NOUN
cana-4853	213	9	haghparast	haghparast	NOUN
cana-4853	213	10	,	,	PUNCT
cana-4853	213	11	‘	'	PUNCT
cana-4853	213	12	‘	'	PUNCT
cana-4853	213	13	quantum	quantum	ADJ
cana-4853	213	14	ternary	ternary	ADJ
cana-4853	213	15	multiplication	multiplication	NOUN
cana-4853	213	16	gate	gate	NOUN
cana-4853	213	17	(	(	PUNCT
cana-4853	213	18	qtmg	qtmg	NOUN
cana-4853	213	19	):	):	PUNCT
cana-4853	213	20	toward	toward	ADP
cana-4853	213	21	quantum	quantum	ADJ
cana-4853	213	22	ternary	ternary	ADJ
cana-4853	213	23	multiplier	multipli	ADJ
cana-4853	213	24	and	and	CCONJ
cana-4853	213	25	a	a	DET
cana-4853	213	26	new	new	ADJ
cana-4853	213	27	realization	realization	NOUN
cana-4853	213	28	for	for	ADP
cana-4853	213	29	ternary	ternary	ADJ
cana-4853	213	30	toffoli	toffoli	NOUN
cana-4853	213	31	gate	gate	NOUN
cana-4853	213	32	,	,	PUNCT
cana-4853	213	33	’’	’'	PUNCT
cana-4853	213	34	j.	j.	PROPN
cana-4853	213	35	circuits	circuits	PROPN
cana-4853	213	36	,	,	PUNCT
cana-4853	213	37	syst	syst	PROPN
cana-4853	213	38	.	.	PUNCT
cana-4853	214	1	comput	comput	PROPN
cana-4853	214	2	.	.	PUNCT
cana-4853	214	3	,	,	PUNCT
cana-4853	214	4	vol	vol	NOUN
cana-4853	214	5	.	.	PROPN
cana-4853	214	6	29	29	NUM
cana-4853	214	7	,	,	PUNCT
cana-4853	214	8	no	no	INTJ
cana-4853	214	9	.	.	NOUN
cana-4853	214	10	5	5	NUM
cana-4853	214	11	,	,	PUNCT
cana-4853	214	12	apr	apr	NOUN
cana-4853	214	13	.	.	PROPN
cana-4853	214	14	2020	2020	NUM
cana-4853	214	15	,	,	PUNCT
cana-4853	214	16	art	art	NOUN
cana-4853	214	17	.	.	PUNCT
cana-4853	215	1	no	no	INTJ
cana-4853	215	2	.	.	NOUN
cana-4853	216	1	2050071	2050071	NUM
cana-4853	216	2	.	.	PUNCT
cana-4853	217	1	[	[	X
cana-4853	217	2	14	14	NUM
cana-4853	217	3	]	]	PUNCT
cana-4853	217	4	m.	m.	NOUN
cana-4853	217	5	m.	m.	PROPN
cana-4853	217	6	m.	m.	PROPN
cana-4853	217	7	khan	khan	PROPN
cana-4853	217	8	,	,	PUNCT
cana-4853	217	9	a.	a.	PROPN
cana-4853	217	10	k.	k.	PROPN
cana-4853	217	11	biswas	biswas	PROPN
cana-4853	217	12	,	,	PUNCT
cana-4853	217	13	s.	s.	PROPN
cana-4853	217	14	chowdhury	chowdhury	PROPN
cana-4853	217	15	,	,	PUNCT
cana-4853	217	16	m.	m.	NOUN
cana-4853	217	17	tanzid	tanzid	PROPN
cana-4853	217	18	,	,	PUNCT
cana-4853	217	19	k.	k.	PROPN
cana-4853	217	20	m.	m.	PROPN
cana-4853	217	21	mohsin	mohsin	PROPN
cana-4853	217	22	,	,	PUNCT
cana-4853	217	23	m.	m.	PROPN
cana-4853	217	24	hasan	hasan	PROPN
cana-4853	217	25	,	,	PUNCT
cana-4853	217	26	and	and	CCONJ
cana-4853	217	27	a.	a.	PROPN
cana-4853	217	28	i.	i.	PROPN
cana-4853	217	29	khan	khan	PROPN
cana-4853	217	30	,	,	PUNCT
cana-4853	217	31	‘	'	PUNCT
cana-4853	217	32	‘	'	PUNCT
cana-4853	217	33	quantum	quantum	ADJ
cana-4853	217	34	realization	realization	NOUN
cana-4853	217	35	of	of	ADP
cana-4853	217	36	some	some	DET
cana-4853	217	37	quaternary	quaternary	ADJ
cana-4853	217	38	circuits	circuit	NOUN
cana-4853	217	39	,	,	PUNCT
cana-4853	217	40	’’	’'	PUNCT
cana-4853	217	41	in	in	ADP
cana-4853	217	42	proc	proc	NOUN
cana-4853	217	43	.	.	PUNCT
cana-4853	218	1	ieee	ieee	PROPN
cana-4853	218	2	region	region	NOUN
cana-4853	218	3	10	10	NUM
cana-4853	218	4	conf	conf	NOUN
cana-4853	218	5	.	.	PUNCT
cana-4853	219	1	(	(	PUNCT
cana-4853	219	2	tencon	tencon	NOUN
cana-4853	219	3	)	)	PUNCT
cana-4853	219	4	,	,	PUNCT
cana-4853	219	5	nov	nov	PROPN
cana-4853	219	6	.	.	PROPN
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cana-4853	219	8	,	,	PUNCT
cana-4853	219	9	pp	pp	ADP
cana-4853	219	10	.	.	PUNCT
cana-4853	220	1	1–5	1–5	X
cana-4853	220	2	.	.	PUNCT
cana-4853	221	1	[	[	X
cana-4853	221	2	15	15	NUM
cana-4853	221	3	]	]	X
cana-4853	221	4	m.	m.	NOUN
cana-4853	221	5	h.	h.	PROPN
cana-4853	221	6	a.	a.	PROPN
cana-4853	221	7	khan	khan	PROPN
cana-4853	221	8	,	,	PUNCT
cana-4853	221	9	‘	'	PUNCT
cana-4853	221	10	‘	'	PUNCT
cana-4853	221	11	synthesis	synthesis	NOUN
cana-4853	221	12	of	of	ADP
cana-4853	221	13	quaternary	quaternary	ADJ
cana-4853	221	14	reversible	reversible	ADJ
cana-4853	221	15	/	/	SYM
cana-4853	221	16	quantum	quantum	ADJ
cana-4853	221	17	comparators	comparator	NOUN
cana-4853	221	18	,	,	PUNCT
cana-4853	221	19	’’	’'	PUNCT
cana-4853	221	20	j.	j.	PROPN
cana-4853	221	21	syst	syst	PROPN
cana-4853	221	22	.	.	PUNCT
cana-4853	222	1	archit	archit	PROPN
cana-4853	222	2	.	.	PUNCT
cana-4853	222	3	,	,	PUNCT
cana-4853	222	4	vol	vol	NOUN
cana-4853	222	5	.	.	PROPN
cana-4853	223	1	54	54	NUM
cana-4853	223	2	,	,	PUNCT
cana-4853	223	3	no	no	INTJ
cana-4853	223	4	.	.	NOUN
cana-4853	223	5	10	10	NUM
cana-4853	223	6	,	,	PUNCT
cana-4853	223	7	pp	pp	ADJ
cana-4853	223	8	.	.	PUNCT
cana-4853	224	1	977–982	977–982	NUM
cana-4853	224	2	,	,	PUNCT
cana-4853	224	3	oct	oct	PROPN
cana-4853	224	4	.	.	PROPN
cana-4853	224	5	2008	2008	NUM
cana-4853	224	6	.	.	PUNCT
cana-4853	225	1	[	[	X
cana-4853	225	2	16	16	NUM
cana-4853	225	3	]	]	PUNCT
cana-4853	225	4	m.	m.	NOUN
cana-4853	225	5	h.	h.	PROPN
cana-4853	225	6	a.	a.	PROPN
cana-4853	225	7	khan	khan	PROPN
cana-4853	225	8	,	,	PUNCT
cana-4853	225	9	‘	'	PUNCT
cana-4853	225	10	‘	'	PUNCT
cana-4853	225	11	a	a	DET
cana-4853	225	12	recursive	recursive	ADJ
cana-4853	225	13	method	method	NOUN
cana-4853	225	14	for	for	ADP
cana-4853	225	15	synthesizing	synthesize	VERB
cana-4853	225	16	quantum	quantum	NOUN
cana-4853	225	17	/	/	SYM
cana-4853	225	18	reversible	reversible	ADJ
cana-4853	225	19	quaternary	quaternary	ADJ
cana-4853	225	20	parallel	parallel	NOUN
cana-4853	225	21	adder	adder	NOUN
cana-4853	225	22	/	/	SYM
cana-4853	225	23	subtractor	subtractor	NOUN
cana-4853	225	24	with	with	ADP
cana-4853	225	25	look	look	NOUN
cana-4853	225	26	-	-	PUNCT
cana-4853	225	27	ahead	ahead	NOUN
cana-4853	225	28	carry	carry	NOUN
cana-4853	225	29	,	,	PUNCT
cana-4853	225	30	’’	’'	PUNCT
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cana-4853	226	6	,	,	PUNCT
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cana-4853	226	8	.	.	PUNCT
cana-4853	227	1	1113–1121	1113–1121	NUM
cana-4853	227	2	,	,	PUNCT
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cana-4853	227	6	.	.	PUNCT
cana-4853	228	1	[	[	X
cana-4853	228	2	17	17	NUM
cana-4853	228	3	]	]	PUNCT
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cana-4853	228	24	full	full	ADJ
cana-4853	228	25	adder	adder	NOUN
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cana-4853	228	29	iete	iete	PROPN
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cana-4853	228	35	.	.	PROPN
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cana-4853	229	6	,	,	PUNCT
cana-4853	229	7	pp	pp	ADJ
cana-4853	229	8	.	.	PUNCT
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cana-4853	229	10	,	,	PUNCT
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cana-4853	230	3	]	]	PUNCT
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cana-4853	230	7	a.	a.	NOUN
cana-4853	230	8	t.	t.	PROPN
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cana-4853	230	13	novel	novel	ADJ
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cana-4853	230	21	circuits	circuit	NOUN
cana-4853	230	22	,	,	PUNCT
cana-4853	230	23	’’	’'	PUNCT
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cana-4853	230	25	.	.	PUNCT
cana-4853	231	1	j.	j.	PROPN
cana-4853	231	2	theor	theor	PROPN
cana-4853	231	3	.	.	PUNCT
cana-4853	232	1	phys	phy	NOUN
cana-4853	232	2	.	.	PUNCT
cana-4853	232	3	,	,	PUNCT
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cana-4853	232	5	.	.	PROPN
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cana-4853	232	7	,	,	PUNCT
cana-4853	232	8	no	no	INTJ
cana-4853	232	9	.	.	PUNCT
cana-4853	233	1	5,pp	5,pp	NUM
cana-4853	233	2	.	.	PUNCT
cana-4853	234	1	1694–1707	1694–1707	NUM
cana-4853	234	2	,	,	PUNCT
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cana-4853	234	5	.	.	PUNCT
cana-4853	235	1	[	[	X
cana-4853	235	2	19	19	NUM
cana-4853	235	3	]	]	PUNCT
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cana-4853	235	18	multiplexer	multiplexer	NOUN
cana-4853	235	19	and	and	CCONJ
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cana-4853	235	21	circuits	circuit	NOUN
cana-4853	235	22	,	,	PUNCT
cana-4853	235	23	’’	’'	PUNCT
cana-4853	235	24	in	in	ADP
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cana-4853	235	26	.	.	PUNCT
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cana-4853	235	29	.	.	PUNCT
cana-4853	236	1	symp	symp	PROPN
cana-4853	236	2	.	.	PUNCT
cana-4853	237	1	multiplevalued	multiplevalue	VERB
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cana-4853	237	3	.	.	PUNCT
cana-4853	237	4	,	,	PUNCT
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cana-4853	237	6	,	,	PUNCT
cana-4853	237	7	pp	pp	ADP
cana-4853	237	8	.	.	PUNCT
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cana-4853	238	2	.	.	PUNCT
cana-4853	239	1	[	[	X
cana-4853	239	2	20	20	NUM
cana-4853	239	3	]	]	PUNCT
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cana-4853	239	5	h.	h.	PROPN
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cana-4853	243	1	(	(	PUNCT
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cana-4853	243	3	)	)	PUNCT
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cana-4853	244	2	.	.	PUNCT
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cana-4853	245	13	‘	'	PUNCT
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cana-4853	246	1	ieee	ieee	NOUN
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cana-4853	247	2	.	.	PUNCT
cana-4853	248	1	annu	annu	PROPN
cana-4853	248	2	.	.	PUNCT
cana-4853	249	1	symp	symp	PROPN
cana-4853	249	2	.	.	PUNCT
cana-4853	250	1	vlsi	vlsi	PROPN
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cana-4853	251	2	.	.	PUNCT
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cana-4853	253	26	.	.	PUNCT
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cana-4853	258	2	.	.	PUNCT
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cana-4853	262	6	.	.	PUNCT
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cana-4853	263	7	:	:	PUNCT
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cana-4853	264	2	(	(	PUNCT
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cana-4853	264	4	)	)	PUNCT
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cana-4853	265	11	‘	'	PUNCT
cana-4853	265	12	‘	'	PUNCT
cana-4853	265	13	garbage	garbage	NOUN
cana-4853	265	14	in	in	ADP
cana-4853	265	15	reversible	reversible	ADJ
cana-4853	265	16	design	design	NOUN
cana-4853	265	17	of	of	ADP
cana-4853	265	18	multiple	multiple	ADJ
cana-4853	265	19	output	output	NOUN
cana-4853	265	20	functions	function	NOUN
cana-4853	265	21	,	,	PUNCT
cana-4853	265	22	’’	’'	PUNCT
cana-4853	265	23	in	in	ADP
cana-4853	265	24	proc	proc	NOUN
cana-4853	265	25	.	.	PUNCT
cana-4853	266	1	6th	6th	ADJ
cana-4853	266	2	int	int	NOUN
cana-4853	266	3	.	.	PUNCT
cana-4853	267	1	symp	symp	PROPN
cana-4853	267	2	.	.	PUNCT
cana-4853	268	1	representations	representation	NOUN
cana-4853	268	2	methodol	methodol	NOUN
cana-4853	268	3	.	.	PUNCT
cana-4853	269	1	future	future	ADJ
cana-4853	269	2	comput	comput	NOUN
cana-4853	269	3	.	.	PUNCT
cana-4853	270	1	technol	technol	PROPN
cana-4853	270	2	.	.	PROPN
cana-4853	270	3	,	,	PUNCT
cana-4853	270	4	mar	mar	PROPN
cana-4853	270	5	.	.	PROPN
cana-4853	270	6	2003	2003	NUM
cana-4853	270	7	,	,	PUNCT
cana-4853	270	8	pp	pp	ADP
cana-4853	270	9	.	.	PUNCT
cana-4853	271	1	162–170	162–170	NUM
cana-4853	272	1	[	[	X
cana-4853	272	2	26	26	NUM
cana-4853	272	3	]	]	X
cana-4853	272	4	s.	s.	PROPN
cana-4853	272	5	lee	lee	PROPN
cana-4853	272	6	,	,	PUNCT
cana-4853	272	7	s.	s.	PROPN
cana-4853	272	8	j.	j.	PROPN
cana-4853	272	9	lee	lee	PROPN
cana-4853	272	10	,	,	PUNCT
cana-4853	272	11	t.	t.	PROPN
cana-4853	272	12	kim	kim	PROPN
cana-4853	272	13	,	,	PUNCT
cana-4853	272	14	j.	j.	PROPN
cana-4853	272	15	s.	s.	PROPN
cana-4853	272	16	lee	lee	PROPN
cana-4853	272	17	,	,	PUNCT
cana-4853	272	18	j.	j.	PROPN
cana-4853	272	19	biamonte	biamonte	PROPN
cana-4853	272	20	,	,	PUNCT
cana-4853	272	21	and	and	CCONJ
cana-4853	272	22	m.	m.	PROPN
cana-4853	272	23	perkowski	perkowski	PROPN
cana-4853	272	24	,	,	PUNCT
cana-4853	272	25	‘	'	PUNCT
cana-4853	272	26	‘	'	PUNCT
cana-4853	272	27	the	the	DET
cana-4853	272	28	cost	cost	NOUN
cana-4853	272	29	of	of	ADP
cana-4853	272	30	quantum	quantum	NOUN
cana-4853	272	31	gate	gate	NOUN
cana-4853	272	32	primitives	primitive	NOUN
cana-4853	272	33	,	,	PUNCT
cana-4853	272	34	’’	’'	PUNCT
cana-4853	272	35	j.	j.	PROPN
cana-4853	272	36	multiple	multiple	ADV
cana-4853	272	37	-	-	PUNCT
cana-4853	272	38	valued	value	VERB
cana-4853	272	39	log	log	NOUN
cana-4853	272	40	.	.	PUNCT
cana-4853	273	1	soft	soft	ADJ
cana-4853	273	2	computing	computing	NOUN
cana-4853	273	3	.	.	PUNCT
cana-4853	274	1	,	,	PUNCT
cana-4853	274	2	vol	vol	NOUN
cana-4853	274	3	.	.	PROPN
cana-4853	274	4	12	12	NUM
cana-4853	274	5	,	,	PUNCT
cana-4853	274	6	nos	nos	X
cana-4853	274	7	.	.	PROPN
cana-4853	275	1	5–6	5–6	NUM
cana-4853	275	2	,	,	PUNCT
cana-4853	275	3	pp	pp	X
cana-4853	275	4	.	.	PUNCT
cana-4853	276	1	561–574	561–574	NUM
cana-4853	276	2	,	,	PUNCT
cana-4853	276	3	aug	aug	PROPN
cana-4853	276	4	.	.	PROPN
cana-4853	276	5	2006	2006	NUM
cana-4853	276	6	.	.	PUNCT
cana-4853	277	1	[	[	X
cana-4853	277	2	27	27	NUM
cana-4853	277	3	]	]	PUNCT
cana-4853	277	4	m.	m.	NOUN
cana-4853	277	5	h.	h.	PROPN
cana-4853	277	6	a.	a.	PROPN
cana-4853	277	7	khan	khan	PROPN
cana-4853	277	8	and	and	CCONJ
cana-4853	277	9	m.	m.	PROPN
cana-4853	277	10	a.	a.	PROPN
cana-4853	277	11	perkowski	perkowski	PROPN
cana-4853	277	12	,	,	PUNCT
cana-4853	277	13	‘	'	PUNCT
cana-4853	277	14	‘	'	PUNCT
cana-4853	277	15	gf(4	gf(4	NOUN
cana-4853	277	16	)	)	PUNCT
cana-4853	277	17	based	base	VERB
cana-4853	277	18	synthesis	synthesis	NOUN
cana-4853	277	19	of	of	ADP
cana-4853	277	20	quaternary	quaternary	ADJ
cana-4853	277	21	reversible	reversible	ADJ
cana-4853	277	22	/	/	SYM
cana-4853	277	23	quantum	quantum	ADJ
cana-4853	277	24	logic	logic	NOUN
cana-4853	277	25	circuits	circuit	NOUN
cana-4853	277	26	,	,	PUNCT
cana-4853	277	27	’’	’'	PUNCT
cana-4853	277	28	in	in	ADP
cana-4853	277	29	proc	proc	NOUN
cana-4853	277	30	.	.	PUNCT
cana-4853	278	1	37th	37th	ADJ
cana-4853	278	2	int	int	NOUN
cana-4853	278	3	.	.	PUNCT
cana-4853	279	1	symp	symp	PROPN
cana-4853	279	2	.	.	PUNCT
cana-4853	280	1	multiplevalued	multiplevalue	VERB
cana-4853	280	2	log	log	NOUN
cana-4853	280	3	.	.	PUNCT
cana-4853	281	1	(	(	PUNCT
cana-4853	281	2	ismvl	ismvl	PROPN
cana-4853	281	3	)	)	PUNCT
cana-4853	281	4	,	,	PUNCT
cana-4853	281	5	may	may	AUX
cana-4853	281	6	2007	2007	NUM
cana-4853	281	7	,	,	PUNCT
cana-4853	281	8	p.	p.	NOUN
cana-4853	281	9	11	11	NUM
cana-4853	281	10	.	.	PUNCT
cana-4853	282	1	[	[	X
cana-4853	282	2	28	28	NUM
cana-4853	282	3	]	]	X
cana-4853	282	4	a.	a.	NOUN
cana-4853	282	5	muthukrishnan	muthukrishnan	PROPN
cana-4853	282	6	and	and	CCONJ
cana-4853	282	7	c.	c.	PROPN
cana-4853	282	8	r.	r.	PROPN
cana-4853	282	9	stroud	stroud	PROPN
cana-4853	282	10	,	,	PUNCT
cana-4853	282	11	‘	'	PUNCT
cana-4853	282	12	‘	'	PUNCT
cana-4853	282	13	multivalued	multivalued	ADJ
cana-4853	282	14	logic	logic	NOUN
cana-4853	282	15	gates	gate	NOUN
cana-4853	282	16	for	for	ADP
cana-4853	282	17	quantum	quantum	ADJ
cana-4853	282	18	computation	computation	NOUN
cana-4853	282	19	,	,	PUNCT
cana-4853	282	20	’’	’'	PUNCT
cana-4853	282	21	phys	phy	NOUN
cana-4853	282	22	.	.	PUNCT
cana-4853	282	23	rev	rev	PROPN
cana-4853	282	24	.	.	PROPN
cana-4853	283	1	a	a	DET
cana-4853	283	2	,	,	PUNCT
cana-4853	283	3	gen	gen	PROPN
cana-4853	283	4	.	.	PROPN
cana-4853	283	5	phys	phys	PROPN
cana-4853	283	6	.	.	PUNCT
cana-4853	283	7	,	,	PUNCT
cana-4853	283	8	vol	vol	NOUN
cana-4853	283	9	.	.	PROPN
cana-4853	284	1	62	62	NUM
cana-4853	284	2	,	,	PUNCT
cana-4853	284	3	no	no	INTJ
cana-4853	284	4	.	.	NOUN
cana-4853	284	5	5	5	NUM
cana-4853	284	6	,	,	PUNCT
cana-4853	284	7	oct	oct	PROPN
cana-4853	284	8	.	.	PROPN
cana-4853	284	9	2000	2000	NUM
cana-4853	284	10	,	,	PUNCT
cana-4853	284	11	art	art	NOUN
cana-4853	284	12	.	.	PUNCT
cana-4853	285	1	no	no	INTJ
cana-4853	285	2	.	.	NOUN
cana-4853	285	3	052309	052309	NUM
cana-4853	285	4	.	.	PUNCT
cana-4853	286	1	[	[	X
cana-4853	286	2	29	29	NUM
cana-4853	286	3	]	]	PUNCT
cana-4853	286	4	m.	m.	NOUN
cana-4853	286	5	h.	h.	PROPN
cana-4853	286	6	a.	a.	PROPN
cana-4853	286	7	khan	khan	PROPN
cana-4853	286	8	and	and	CCONJ
cana-4853	286	9	h.	h.	PROPN
cana-4853	286	10	thapliyal	thapliyal	PROPN
cana-4853	286	11	,	,	PUNCT
cana-4853	286	12	‘	'	PUNCT
cana-4853	286	13	‘	'	PUNCT
cana-4853	286	14	reversible	reversible	ADJ
cana-4853	286	15	logic	logic	NOUN
cana-4853	286	16	based	base	VERB
cana-4853	286	17	mapping	mapping	NOUN
cana-4853	286	18	of	of	ADP
cana-4853	286	19	quaternary	quaternary	ADJ
cana-4853	286	20	sequential	sequential	ADJ
cana-4853	286	21	circuits	circuit	NOUN
cana-4853	286	22	using	use	VERB
cana-4853	286	23	qgfsop	qgfsop	PROPN
cana-4853	286	24	expression,’in	expression,’in	PROPN
cana-4853	286	25	vlsi	vlsi	PROPN
cana-4853	286	26	,	,	PUNCT
cana-4853	286	27	jul	jul	PROPN
cana-4853	286	28	.	.	PROPN
cana-4853	286	29	2015	2015	NUM
cana-4853	286	30	,	,	PUNCT
cana-4853	286	31	pp	pp	ADJ
cana-4853	286	32	.	.	PUNCT
cana-4853	287	1	297–302	297–302	NUM
cana-4853	287	2	.	.	PUNCT
