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Comprehensive and Comparative Analysis of QCA-based Circuit Designs for Next-generation Computation

Jain, Vaibhav ; Sharma, Devendra Kumar ; Gaur, Hari Mohan ; Singh, Ashutosh Kumar ; Wen, Xiaoqing

ACM computing surveys, 2024-05, Vol.56 (5), p.1-36, Article 120 [Periódico revisado por pares]

New York, NY: ACM

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  • Título:
    Comprehensive and Comparative Analysis of QCA-based Circuit Designs for Next-generation Computation
  • Autor: Jain, Vaibhav ; Sharma, Devendra Kumar ; Gaur, Hari Mohan ; Singh, Ashutosh Kumar ; Wen, Xiaoqing
  • Assuntos: Cellular automata ; Circuit design ; Circuits ; Comparative analysis ; Computation ; Hardware ; Logic circuits ; Quantum dots ; Quantum dots and cellular automata
  • É parte de: ACM computing surveys, 2024-05, Vol.56 (5), p.1-36, Article 120
  • Descrição: For the past several decades, VLSI design has been focused on lowering the size, power, and delay. As of now, this miniaturization does not seems to be a possible way to address the demands of consumers. Quantum Dot Cellular Automata (QCA) technology is a promising technique that is able to provide low-power high-speed circuits at nano-scale. Much work has been done in this area where the researchers have proposed a variety of combinational and sequential logic circuits for future computation. This article presents a concrete review of design approaches, logic circuits, clocking schemes, implementation tools, and possible fabrication methodologies presented so far in QCA technology. A critical comparative analysis is provided on the basis of reported performance parameters in the domain. The aim of this article is to collect all necessary information into a single source, highlight the research challenges to be taken in the near future, and enlighten the path for upcoming researchers in the area.
  • Editor: New York, NY: ACM
  • Idioma: Inglês

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