Negative refraction of a surface plasmon polariton

T.A. Leskova, A.A. Maradudin
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引用次数: 1

Abstract

We study theoretically the negative refraction of a surface plasmon polariton. The system we consider consists of a vacuum that is in a contact with two metals that each fill a quarter space with a periodic boundary between them. The interface of each of the metals with the vacuum supports a surface plasmon polariton. When a surface plasmon polariton passes through the periodic boundary between the metals it transforms partly into the Bragg beams of the refracted and reflected surface plasmon polaritons and partly into volume waves in the vacuum. A suitable choice of the period can ensure that the only propagating Bragg beams of the refracted surface plasmon polariton are the specular beam and the (−1)-order beam, which is negatively refracted. With a suitable choice for the form of the profile function and its amplitude the specular beam can be made to vanish.

表面等离子激元极化子的负折射
从理论上研究了表面等离子激元极化子的负折射。我们考虑的系统包括一个真空,它与两种金属接触,每一种金属填满四分之一的空间,它们之间有一个周期边界。每一种金属与真空的界面支持一个表面等离子激元极化子。当表面等离子激元极化子穿过金属之间的周期边界时,它部分转化为折射和反射表面等离子激元的布拉格光束,部分转化为真空中的体积波。适当的周期选择可以确保折射表面等离子激元极化子的传播布拉格光束只有镜面光束和负折射的(−1)阶光束。通过选择合适的轮廓函数形式及其振幅,可以使镜面光束消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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