Optical logic circuits using double controlled logic gate

被引:4
作者
Chattopadhyay, Tanay [1 ]
机构
[1] WBPDCL, Kolaghat Thermal Power Stn, Mech Operat Stage 2, KTPP Sub Post Off, Mecheda 721137, W Bengal, India
关键词
logic circuits; logic gates; mathematical analysis; optical logic; optical logic circuits; logic gate; irreversible computer; data loss; special circuit design; double controlled logic circuit; circuit complexity; power cost; mathematical model; Boolean logic unit; grey-to-binary-to-grey code conversion; cross-bar network architecture; controlled logic unit; optical cost; optical delay; switching energy; POWER-CONSUMPTION; ULTRAFAST; ENERGY; SWITCH; THERMODYNAMICS; ARCHITECTURE; COMPUTATION; OPERATIONS;
D O I
10.1049/iet-opt.2013.0063
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Conventional irreversible computer is power dissipative. Data loss is the major problem in such computation, but it can be minimised with a special circuit design. In this study optical double controlled logic' (DCL) circuit is proposed, which can minimise the circuit complexity and power cost. The mathematical model of the DCL circuit is given in this study, which also has good cascadability and compactness. Some complex logic circuits (16-Boolean logic unit, grey-to-binary-to-grey code conversion and cross-bar network architecture) using controlled logic unit have also been proposed in this study. The circuits also have reversible property. The performance of the proposed circuits from the viewpoint of optical cost, optical delay and switching energy is also discussed in this study.
引用
收藏
页码:99 / 109
页数:11
相关论文
共 69 条
  • [1] Photonic crystal and quantum dot technologies for all-optical switch and logic device
    Asakawa, Kiyoshi
    Sugimoto, Yoshimasa
    Watanabe, Yoshinori
    Ozaki, Nobuhiko
    Mizutani, Akio
    Takata, Yoshiaki
    Kitagawa, Yoshinori
    Ishikawa, Hiroshi
    Ikeda, Naoki
    Awazu, Koichi
    Wang, Xiaomin
    Watanabe, Akira
    Nakamura, Shigeru
    Ohkouchi, Shunsuke
    Inoue, Kuon
    Kristensen, Martin
    Sigmund, Ole
    Borel, Peter Ingo
    Baets, Roel
    [J]. NEW JOURNAL OF PHYSICS, 2006, 8
  • [2] THERMODYNAMICALLY REVERSIBLE COMPUTATION
    BENNETT, CH
    [J]. PHYSICAL REVIEW LETTERS, 1984, 53 (12) : 1202 - 1202
  • [3] THE THERMODYNAMICS OF COMPUTATION - A REVIEW
    BENNETT, CH
    [J]. INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 1982, 21 (12) : 905 - 940
  • [4] LOGICAL REVERSIBILITY OF COMPUTATION
    BENNETT, CH
    [J]. IBM JOURNAL OF RESEARCH AND DEVELOPMENT, 1973, 17 (06) : 525 - 532
  • [5] Bogoni A., 2008, ECOC 2008 21 25 SEPT, P1, DOI [i10.1109/ECOC.2008.4729575, DOI 10.1109/EC0C.2008.4729575]
  • [6] DIGITAL OPTICAL COMPUTING WITH SYMBOLIC SUBSTITUTION
    BRENNER, KH
    HUANG, A
    STREIBL, N
    [J]. APPLIED OPTICS, 1986, 25 (18): : 3054 - 3060
  • [7] Efficient adder circuits based on a conservative reversible logic gate
    Bruce, JW
    Thornton, MA
    Shivakumaraiah, L
    Kokate, PS
    Li, X
    [J]. ISVLSI 2000: IEEE COMPUTER SOCIETY ANNUAL SYMPOSIUM ON VLSI - NEW PARADIGMS FOR VLSI SYSTEMS DESIGN, 2002, : 83 - 88
  • [8] Fredkin gates for finite-valued reversible and conservative logics
    Cattaneo, G
    Leporati, A
    Leporini, R
    [J]. JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL, 2002, 35 (46): : 9755 - 9785
  • [9] Caulfield H. J., 2009, ENCY COMPLEXITY SYST, P9127
  • [10] Generalized optical logic elements - GOLEs
    Caulfield, H. John
    Soref, Richard A.
    Qian, Lei
    Zavalin, Andrey
    Hardy, James
    [J]. OPTICS COMMUNICATIONS, 2007, 271 (02) : 365 - 376