A New Design of a 3 X 3 Reversible Circuit Based on a Nanoscale Quantum-Dot Cellular Automata

dc.contributor.author Liu, Ling-Li
dc.contributor.author Navimipour, Nima Jafari
dc.date.accessioned 2023-10-19T15:13:10Z
dc.date.available 2023-10-19T15:13:10Z
dc.date.issued 2023
dc.description.abstract Quantum-dot cellular automata (QCA) is the best-suggested nanotechnology for designing digital electronic circuits. It has a higher switching frequency, low-power expenditures, low area, high speed and higher scale integration. Recently, many types of research have been on the design of reversible logic gates. Nevertheless, a high demand exists for designing high-speed, high-performance and low-area QCA circuits. Reversible circuits have notably improved with developments in complementary metal-oxide-semiconductor (CMOS) and QCA technologies. In QCA systems, it is important to communicate with other circuits and reversible gates reliably. So, we have used efficient approaches for designing a 3 x 3 reversible circuit based on XOR gates. Also, the suggested circuits can be widely used in reversible and high-performance systems. The suggested architecture for the 3 x 3 reversible circuit in QCA is composed of 28 cells, occupying only 0.04 mu m(2). Compared to the state-of-the-art, shorter time, smaller areas, more operational frequency and better performance are the essential benefits of the suggested reversible gate design. Full simulations have been conducted with the utilization of QCADesigner software. Additionally, the proposed 3 x 3 gate has been schematized using two XOR gates. en_US
dc.identifier.doi 10.1142/S0218126623502298 en_US
dc.identifier.issn 0218-1266
dc.identifier.issn 1793-6454
dc.identifier.scopus 2-s2.0-85150709329 en_US
dc.identifier.uri https://doi.org/10.1142/S0218126623502298
dc.identifier.uri https://hdl.handle.net/20.500.12469/5620
dc.language.iso en en_US
dc.publisher World Scientific Publ Co Pte Ltd en_US
dc.relation.ispartof Journal of Circuits Systems and Computers en_US
dc.rights info:eu-repo/semantics/closedAccess en_US
dc.subject Testing en_US
dc.subject Ripple Carry Adder
dc.subject reversible logic en_US
dc.subject XOR gate en_US
dc.subject Ripple Carry Adder En_Us
dc.subject QCA en_US
dc.subject Efficient Design
dc.subject nanoelectronic en_US
dc.subject Efficient Design En_Us
dc.subject quantum-dot cellular automata en_US
dc.title A New Design of a 3 X 3 Reversible Circuit Based on a Nanoscale Quantum-Dot Cellular Automata en_US
dc.type Article en_US
dspace.entity.type Publication
gdc.author.id Jafari Navimipour, Nima/0000-0002-5514-5536
gdc.author.scopusid 59447529500
gdc.author.scopusid 55897274300
gdc.author.wosid Jafari Navimipour, Nima/AAF-5662-2021
gdc.bip.impulseclass C5
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gdc.coar.access metadata only access
gdc.coar.type text::journal::journal article
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gdc.description.department Kadir Has University
gdc.description.departmenttemp [Liu, Ling-Li] Gannan Normal Univ, Sch Phys & Elect Informat, Ganzhou 341000, Peoples R China; [Navimipour, Nima Jafari] Kadir Has Univ, Fac Engn & Nat Sci, Dept Comp Engn, Istanbul, Turkiye; [Navimipour, Nima Jafari] Natl Yunlin Univ Sci & Technol, Future Technol Res Ctr, Touliu 64002, Yunlin, Taiwan en_US
gdc.description.issue 13 en_US
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q3
gdc.description.volume 32 en_US
gdc.description.woscitationindex Science Citation Index Expanded
gdc.description.wosquality Q4
gdc.identifier.openalex W4319454517
gdc.identifier.wos WOS:000950271900002 en_US
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gdc.index.type Scopus
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gdc.oaire.keywords QCA
gdc.oaire.keywords Ripple Carry Adder
gdc.oaire.keywords Testing
gdc.oaire.keywords Efficient Design
gdc.oaire.keywords reversible logic
gdc.oaire.keywords XOR gate
gdc.oaire.keywords quantum-dot cellular automata
gdc.oaire.keywords nanoelectronic
gdc.oaire.popularity 2.0536601E-9
gdc.oaire.publicfunded false
gdc.oaire.sciencefields 0202 electrical engineering, electronic engineering, information engineering
gdc.oaire.sciencefields 02 engineering and technology
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gdc.virtual.author Jafari Navimipour, Nima
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