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利用椭圆谐振器设计纳米级等离子体逻辑门。

Nanoscale plasmonic logic gates design by using an elliptical resonator.

作者信息

Alali Mohammed J, Raheema Mithaq Nama, Alwahib Ali A

出版信息

Appl Opt. 2023 May 20;62(15):4080-4089. doi: 10.1364/AO.492171.

Abstract

This study implemented AND, NAND, OR, XOR, NOR, XNOR, and NOT plasmonic logic gates using the finite element method. The all-optical nanoscale logic gates were designed using a single structure based on the technology of insulator-metal-insulator nanoscale plasmonic waveguides. The phase of optical waves and the position of the control and input ports are the most important factors for attaining the optimal transmission value based on interference between the input and control ports. The transmission threshold is 35%, and 850 nm is the operating wavelength. This design creates nanoscale logic gates with a structure dimension of 250×250. The transmission threshold, modulation depth, contrast ratio, and insertion loss criteria were proposed to evaluate the efficacy of the all-optical gates.

摘要

本研究采用有限元方法实现了与、与非、或、异或、或非、同或和非等等离子体逻辑门。全光纳米级逻辑门基于绝缘体 - 金属 - 绝缘体纳米级等离子体波导技术,采用单一结构进行设计。光波的相位以及控制端口和输入端口的位置是基于输入端口与控制端口之间的干涉实现最佳传输值的最重要因素。传输阈值为35%,工作波长为850 nm。该设计创建了结构尺寸为250×250的纳米级逻辑门。提出了传输阈值、调制深度、对比度和插入损耗标准来评估全光门的效能。

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