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Novel method of designing all optical frequency-encoded Fredkin and Toffoli logic gates using semiconductor optical amplifiers

机译:使用半导体光放大器设计所有光频率编码的Fredkin和Toffoli逻辑门的新颖方法

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摘要

Reversible logic gates have attracted significant attention to the researchers in the field of optics and optoelectronics as it has wide applications in sequential and combinational circuit of optical computing, optical signal processing and in multivalued logic operations. Several all-optical reversible logic gates have been proposed such as controlled NOT (Feynman gate), Fredkin gate, Toffoli gate, New Gate, Peres gate etc. The beauty of all these reversible conservative logic gates is that all types of arithmetic and logical operation can be performed with these gates with lower hardware complexity and without loss of any input information. To perform these logic operations, encoding and decoding of optical signals are of great important issues. In this communication the author presents a method of designing all optical Fredkin gate and Toffoli gate using frequency encoding/decoding techniques because of several inherent advantages of this encoding/decoding. To develop the method of designing these two reversible logic gates, non-linear polarisation rotation of the probe beam, frequency routing and frequency conversion properties of semiconductor optical amplifiers have been exploited which will give very high operational speed (of the order of THz) with very good on/off contrast ratio.
机译:可逆逻辑门在光学和光电子领域引起了极大的关注,因为它在光学计算的顺序和组合电路,光信号处理以及多值逻辑运算中有着广泛的应用。已经提出了几种全光可逆逻辑门,例如受控的非门(费曼门),弗雷德金门,托菲利门,新门,佩雷斯门等。所有这些可逆保守逻辑门的美在于所有类型的算术和逻辑运算这些门可以用较低的硬件复杂度执行并且不会丢失任何输入信息。为了执行这些逻辑运算,光信号的编码和解码是非常重要的问题。在本通讯中,作者提出了一种使用频率编码/解码技术设计所有光学Fredkin门和Toffoli门的方法,因为这种编码/解码具有一些固有的优势。为了开发设计这两个可逆逻辑门的方法,已经开发了探测光束的非线性偏振旋转,半导体光放大器的频率路由和频率转换特性,这些特性将提供非常高的工作速度(THz量级),而很好的开/关对比度。

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  • 来源
    《Optoelectronics, IET》 |2011年第6期|p.247-254|共8页
  • 作者

    Garai S.K.;

  • 作者单位

    Department of Physics, M.U.C. Women's College, Burdwan, West Bengal 713104, India;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 01:26:14

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