可编程表面电磁波耦合器

K. Mehrany, B. Rashidian
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引用次数: 0

摘要

近年来,人们提出了一组基于导电接口的新型器件。这些导电界面可以通过MOS结构的反转层、捕获电荷或耗尽层电荷来实现。研究表明,这些结构可以支撑表面电磁波。本文分析了导电界面支撑下表面电磁波的耦合问题,并利用耦合模式理论推导了解析公式。结果表明,可以通过施加横向电压对该结构的耦合长度进行编程,从而得到一种新型的光调制器。通过求解麦克斯韦方程组和应用适当的边界条件,验证了耦合模理论所得结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Programmable surface electromagnetic wave coupler
Recently, a group of novel devices based on conducting interfaces is proposed. These conducting interfaces can be implemented by using the inversion layer of MOS structures, trapped charges or depletion layer charges. It has been shown that these structures can support surface electromagnetic waves. In this paper, the coupling of surface electromagnetic waves supported by conducting interfaces is analyzed and an analytical formula is driven by using the coupled mode theory. It is shown that one can program the coupling length of this structure by applying a transverse voltage and obtain a new type of optical modulator. The results obtained by coupled mode theory are verified by solving Maxwell's equations and applying appropriate boundary conditions.
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