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Design and analysis of a photonic crystal-based all-optical 3-input OR gate for high-speed optical processing

机译:用于高速光学处理的基于光子晶体的全光 3 输入 OR 门的设计与分析

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摘要

Abstract The implementation of an optimized three-input OR gate has been accomplished through the use of T-shaped two-dimensional photonic crystals, which are made of silicon material submerged in an air background. Several parameters, such as refractive indices and radius, have been varied and the ON-to-OFF contrast ratios for the various parameters have been compared in order to reduce the probability of an error in the designed structure being produced. The simulation has been carried out for various combinations of OR gate and electric field intensities have been calculated at a specific wavelength of 1550 nm using the Finite-difference-time-domain method. Furthermore, the designed structure has achieved a contrast ratio of approximately 8.66 dB, a response time of 12 fs, transmission efficiency for the minimum and maximum values of 23 and 169, insertion loss of 2.27 dB, and an operating speed of 83.3 Tbps, making it suitable for use in optical signal processing.
机译:摘要 采用浸没在空气背景中的硅材料制成的T形二维光子晶体,实现了优化的三输入OR门。已经改变了几个参数,例如折射率和半径,并比较了各种参数的开/关对比度,以降低设计结构中产生错误的可能性。使用有限差分时域方法计算了特定波长为 1550 nm 的 OR 栅极和电场强度的各种组合。此外,所设计的结构实现了约8.66 dB的对比度,12 fs的响应时间,最小值和最大值的传输效率分别为23%和169%,插入损耗为2.27 dB,工作速度为83.3 Tbps,使其适用于光信号处理。

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