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All-Optical Logic and Arithmetic Operation using Soliton Control for Tree Architecture Use

机译:使用孤子控制的全光逻辑和算术运算,用于树结构

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摘要

This study has proposed a new design system for basic all-optical logic and arithmetic operation using dark-bright soliton conversion control base on tree architecture. Optical tree architecture and nonlinear materials can provide a significant role for contribution in optical interconnecting network and ultrafast photonic computing system. In operation, the input data for all-optical binary logic can be formed by dark and bright soliton pulses for logic '0' and '1', respectively. By using the dark-bright soliton conversion behaviors, the conversion between dark and bright soliton pulses can be obtained and formed the logic pulse by a π/2 phase shifted device (i.e., an optical coupler). In application, the proposed scheme can be recognized as a simple and flexible system for forming the logic switching system, which can be used for advanced logical system.
机译:本研究提出了一种基于树结构的暗-亮孤子转换控制的基本全光逻辑和算术运算设计系统。光学树架构和非线性材料可以为光学互连网络和超快速光子计算系统做出重要贡献。在操作中,全光二进制逻辑的输入数据可以分别由逻辑“ 0”和“ 1”的暗和亮孤子脉冲形成。通过使用暗-亮孤子转换行为,可以获得暗和亮孤子脉冲之间的转换,并通过π/ 2相移器件(即,光耦合器)形成逻辑脉冲。在应用中,所提出的方案可以被认为是用于形成逻辑交换系统的简单而灵活的系统,可以用于高级逻辑系统。

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