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首页> 外文期刊>Optics and Photonics Journal >Designs of All-Optical Higher-Order Signed-Digit Adders Using Polarization-Encoded Based Terahertz-Optical-Asymmetric-Demultiplexer (TOAD)
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Designs of All-Optical Higher-Order Signed-Digit Adders Using Polarization-Encoded Based Terahertz-Optical-Asymmetric-Demultiplexer (TOAD)

机译:基于偏振编码的太赫兹光学非对称解复用器(TOAD)的全光高阶有符号数字加法器的设计

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摘要

Various designed circuits for multiple-valued all-optical arithmetic are demonstrated. The terahertz-optical-asymmetric-demultiplexer (TOAD) switch is used as the basic structure unit in the proposed circuits due to its compact size, thermal stability, and low power operation. The designs of trinary and quaternary signed-digit numbers based adders are presented using different polarized states of light. These proposed polarization-encoded based adders use much less switches and their speeds are higher than the intensity-encoded counterparts. Further, it will be shown that one of the proposed trinary signed-digit adders is twice as fast as a recently reported modified signed-digit adder.
机译:演示了用于多值全光学算法的各种设计电路。太赫兹光非对称多路分解器(TOAD)开关由于其紧凑的尺寸,热稳定性和低功耗工作而被用作所提出电路的基本结构单元。基于不同偏振态的光,给出了基于三进制和四进制带符号数的加法器的设计。这些建议的基于偏振编码的加法器使用的开关少得多,并且其速度比强度编码的对应器高。此外,将表明,提出的三进制带符号数字加法器之一的速度是最近报告的修改的带符号数字加法器的两倍。

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