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用于光计算应用的基于光子晶体的全光解复用器的设计与性能增强

Design and performance enhancement of an all-optical demultiplexer for optical computing applications employing photonic crystals.

作者信息

Swarnakar Sandip, Saikiran Yerravalli, Chavadi Yashwanth Kuruva, Bhavan Kumar Katta, Venkata Rakesh Naddi, Kumar Santosh

出版信息

Appl Opt. 2023 May 10;62(14):3567-3573. doi: 10.1364/AO.486541.

Abstract

In this paper, a photonic crystal (PhC) based 1×2 demultiplexer is designed to work efficiently at 1550 , which is the operating wavelength of optical communication. In designing a 1×2 demultiplexer, the PhC structure employs Y-shaped square-lattice silicon rods with air as its basis in accordance with the principle of beam interference. This study presents a 15×15 rod-based PhC optimized structure with air as its background. Several distinct phase studies are carried out making use of a wide variety of lattice constant and refractive index values of PhCs. The design achieves enhanced performance in accordance with parameters such as having higher contrast ratio of 15.64 dB, high transmission efficiency of 77.92%, fast response time of 15.03 fs, and low insertion loss of 1.08 dB with optimal values for refractive index (RI), silicon rod radius, and lattice constant. The results of the simulation that used the finite-difference-time-domain technique illustrate the good performance of this structure, which exhibits a higher contrast ratio and bit rate, average transmitted power, and fewer power losses.

摘要

本文设计了一种基于光子晶体(PhC)的1×2解复用器,使其在1550处高效工作,这是光通信的工作波长。在设计1×2解复用器时,光子晶体结构根据光束干涉原理,采用以空气为基底的Y形方晶格硅棒。本研究提出了一种以空气为背景的15×15棒状光子晶体优化结构。利用光子晶体的各种晶格常数和折射率值进行了几个不同的相位研究。该设计根据对比度比高达15.64 dB、传输效率高达77.92%、响应时间快至15.03 fs以及插入损耗低至1.08 dB等参数,通过折射率(RI)、硅棒半径和晶格常数的最佳值实现了性能增强。使用时域有限差分技术的模拟结果表明了该结构的良好性能,其具有更高的对比度比和比特率、平均传输功率以及更少的功率损耗。

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