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A Novel Manipulation for Implementing Logic Operations Based on Plasmonic Resonators

机译:基于等离子体谐振器实现逻辑运算的新颖操纵

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摘要

In this paper, a plasmonic logic device with the novel manipulation method is proposed. It consists of a hexagonal resonator in the center of the structure and dual rectangular resonators in which two sliders are embedded. The input states of the logic gate are represented by the positions of the slider. The temporal coupled-mode theory demonstrates that different positions of the slider lead to changes in the transmission spectra, which is the main idea in achieving logic operation. Ultimately, three logic operations (AND, XOR, and NOR) can be implemented simultaneously by moving the sliders and the finite-difference time-domain method is used for numerical validation. In addition, the influence of structural parameters on transmission characteristics and contrast ratio is also investigated. This paper is of great significance to the design of optical logic device on-chip and provides a new method for designing other integrated photonic devices.
机译:本文提出了一种具有新型操纵方法的等离子体逻辑装置。它包括在结构中心和双矩形谐振器中的六边形谐振器组成,其中嵌入两个滑块。逻辑门的输入状态由滑块的位置表示。时间耦合模式理论表明了滑块的不同位置导致传输光谱的变化,这是实现逻辑操作的主要思想。最终,可以通过移动滑块和有限差分时间域方法来同时实现三个逻辑操作(以及,XOR和NOR),并且用于数值验证。此外,还研究了结构参数对透射特性和对比度的影响。本文对芯片上的光学逻辑器件设计具有重要意义,并提供了一种设计其他集成光子器件的新方法。

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