Rachana Maddala, Swarnakar Sandip, Krishna Sabbi Vamshi, Kumar Santosh
Appl Opt. 2022 Jan 1;61(1):77-83. doi: 10.1364/AO.443424.
In this paper, a three-input AND logic gate is employed using a 2D photonic crystal T-shaped waveguide using a silicon in an air medium. In contrast to other gates, the key functions of employing an AND gate are recognition, error correction, code conversion, data encryption/decryption, and arithmetic operations. The proposed footprint is 8.4µ×5.4µ, which is a modest size. The performance of the proposed AND gate is investigated by employing the finite-difference time-domain approach, and the outputs are validated at wavelength () of 1.55 µm. The outcomes clearly show the higher contrast ratio (CR) of 24.533 dB, and the worst case CR of is 8.6 dB; transmission efficiency values for minimum and maximum values are 19.6% and 142%; reaction time is 26 fs; insertion loss is 1.52 dB; and bit rate is 38.4 Tbps, which can be used in high-speed optical signal processing. The suggested circuit's primary objective is to consume minimal space and possess high CR.
在本文中,使用二维光子晶体T形波导,以空气中的硅为介质,构建了一个三输入与逻辑门。与其他门电路不同,使用与门的关键功能包括识别、纠错、代码转换、数据加密/解密以及算术运算。所提出的版图尺寸为8.4µ×5.4µ,尺寸适中。采用时域有限差分法对所提出的与门性能进行了研究,并在波长为1.55 µm时对输出进行了验证。结果清楚地表明,对比度(CR)高达24.533 dB,最坏情况下的CR为8.6 dB;最小值和最大值的传输效率分别为19.6%和142%;反应时间为26 fs;插入损耗为1.52 dB;比特率为38.4 Tbps,可用于高速光信号处理。所建议电路的主要目标是占用最小空间并具有高对比度。