LUT BASED FREDKIN GATE

被引:2
|
作者
Tyurin, S. F. [1 ,2 ]
机构
[1] Perm Natl Res Polytech Univ, Automat & Telemechan Dept, Perm, Russia
[2] Perm State Univ, Software Comp Syst Dept, Perm, Russia
关键词
Quantum Computing; Logic Function; Fredkin Gate; Shannon decomposition or Boolean factorization;
D O I
10.15588/1607-3274-2020-1-5
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Context. The concept of existing computers when achieving nanoscale hardware has almost exhausted itself. This also applies to computing power and related energy costs. Reversible computing, for example billiard-ball computer, is the base model of the quantum computing which are considered to be the prospect of IT technology. Billiard-ball computing is energy-effective computing or green computing. Base of such paradigm are special logic gates. However, the mathematical apparatus for creating such computers has not yet been fully developed. The problem is that for new reversible elements that have a one-to-one correspondence between inputs and outputs, the application of well-known methods of analysis and synthesis encounters certain difficulties. So, for example, it is forbidden to use branching, which significantly complicates the synthesis. Reversible elements should provide signal transmission in the forward and reverse directions, which is in principle feasible in binary logic based on tri-states buffers, but significantly complicates the device, increases the crystal area and power consumption, which they are designed to reduce. Objective. The goal of the work is the analysis of the functionally complete reversible gates that named Toffoli gate, Fredkin gate, the analysis of the binary full adder, based on Fredkin gates and to design method for circuits based proposed gate. Methods. Analysis of the digital circuits with Boolean algebra. Synthesis digital circuits with proposed decomposition method. Design Fredkin gate in term of the FPGA's Look up Table. Simulation of proposed element in the system NI Multisim by National Instruments Electronics Workbench Group. Results. Analysis of the full adder based on Fredkin gates. Synthesis method of the reversible circuits based on Fredkin gates. LUT based Fredkin gate and it simulation. Conclusions. The conducted studies allows us to build circuits based on Fredkin gates from proposed novel elements.
引用
收藏
页码:44 / 53
页数:10
相关论文
共 50 条
  • [41] A New CRL Gate as Super Class of Fredkin Gate to Design Reversible Quantum Circuits
    Thapliyal, Himanshu
    Bhatt, Apeksha
    Ranganathan, Nagarajan
    2013 IEEE 56TH INTERNATIONAL MIDWEST SYMPOSIUM ON CIRCUITS AND SYSTEMS (MWSCAS), 2013, : 1067 - 1070
  • [42] Refined Fredkin gate assisted by cross-Kerr nonlinearity
    Du, Fang-Fang
    Fan, Gang
    Wu, Yi-Ming
    OPTICS COMMUNICATIONS, 2023, 546
  • [43] Experimentally optimized implementation of the Fredkin gate with atoms in cavity QED
    Li-Cong Song
    Yan Xia
    Jie Song
    Quantum Information Processing, 2015, 14 : 511 - 529
  • [44] An Holistic Extension for Classical Logic via Quantum Fredkin Gate
    Freytes, Hector
    Sergioli, Giuseppe
    ENTROPY, 2021, 23 (09)
  • [45] All-optical Fredkin gate using photonic-crystal-based nonlinear cavities
    Hassangholizadeh-Kashtiban, Mandi
    Alipour-Banaei, Hamed
    Tavakoli, Mohammad Bagher
    Sabbaghi-Nadooshan, Reza
    APPLIED OPTICS, 2020, 59 (03) : 635 - 641
  • [46] Design and evaluation of clocked nanomagnetic logic conservative Fredkin gate
    Ali Akbar Dadjouyan
    Samira Sayedsalehi
    Reza Faghih Mirzaee
    Somayyeh Jafarali Jassbi
    Journal of Computational Electronics, 2020, 19 : 396 - 406
  • [47] RESIDUE ARITHMETIC PROCESSING UTILIZING OPTICAL FREDKIN GATE ARRAYS
    MIRSALEHI, MM
    SHAMIR, J
    CAULFIELD, HJ
    APPLIED OPTICS, 1987, 26 (18): : 3940 - 3946
  • [48] Fast synthesis of the Fredkin gate via quantum Zeno dynamics
    Shao, Xiao-Qiang
    Zheng, Tai-Yu
    Zhang, Shou
    QUANTUM INFORMATION PROCESSING, 2012, 11 (06) : 1797 - 1808
  • [49] Fast synthesis of the Fredkin gate via quantum Zeno dynamics
    Xiao-Qiang Shao
    Tai-Yu Zheng
    Shou Zhang
    Quantum Information Processing, 2012, 11 : 1797 - 1808
  • [50] Memristor-based Oscillator for Complex Chemical Wave Logic Computations: Fredkin Gate Paradigm
    Chatzinikolaou, Theodoros Panagiotis
    Fyrigos, Iosif-Angelos
    Ntinas, Vasileios
    Kitsios, Stavros
    Bousoulas, Panagiotis
    Tsompanas, Michail-Antisthenis
    Tsoukalas, Dimitris
    Adamatzky, Andrew
    Sirakoulis, Georgios Ch
    2022 IEEE 13TH LATIN AMERICAN SYMPOSIUM ON CIRCUITS AND SYSTEMS (LASCAS), 2022, : 49 - 52