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首页> 外文期刊>Journal of Computational Electronics >Performance analysis of all-optical full-adder based ontwo-dimensional photonic crystals
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Performance analysis of all-optical full-adder based ontwo-dimensional photonic crystals

机译:基于二维光子晶体的全光全加器性能分析

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摘要

An all-optical full-adder device is implemented using a two-dimensional photonic crystal waveguide. The design of the full-adder circuit is based on a beam-interference principle that utilizes a combination of Y- and T-shaped waveguide structures formed from silicon dielectric rods in air background. Available optical full-adder circuits are designed with either a semiconductor optical amplifier (SOA) or a nonlinear material. The proposed circuit has been implemented without using any nonlinear material and SOA to overcome previous limitations. Various combinations of inputs of the full-adder are used and optimized through multiple simulations. The difference in the output between logic "0" and "1" has been optimized to reduce the error probability in their identification. The simulated outputs are also verified with the help of the electric field intensity distribution at wavelengths near 1550 nm for different input combinations of the full-adder. Moreover, the proposed full-adder structure has very fast response time of 1.06 ps.
机译:使用二维光子晶体波导来实现全光全加器器件。全加法器电路的设计基于光束干扰原理,该原理利用了由硅绝缘棒在空中背景中形成的Y形和T形波导结构的组合。可用的光学全加器电路是用半导体光放大器(SOA)或非线性材料设计的。所提出的电路已经实现,没有使用任何非线性材料和SOA来克服先前的限制。使用了全加法器的各种输入组合,并通过多次仿真对其进行了优化。逻辑“ 0”和“ 1”之间的输出差异已得到优化,以减少其识别中的错误概率。对于全加法器的不同输入组合,还借助于在1550 nm附近的波长处的电场强度分布来验证模拟输出。而且,提出的全加器结构具有非常快的1.06 ps响应时间。

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