任意双各向异性超材料中的菲涅耳-艾里方程、法布里-珀罗共振和表面电磁波

M. Durach, Felix Williamson, Jacob J. Adams, Tonilynn Holtz, P. Bhatt, R. Moreno, Franchescia Smith
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引用次数: 1

摘要

我们引入了具有任意有效介质参数的双各向异性层的光学响应理论,得到了所有入射方向和偏振方向反射系数和透射系数的广义菲涅耳-艾里方程。这些方程的极点提供了双各向异性层和界面中法布里-珀罗共振和表面电磁波色散的显式表达式。这些共振的存在条件在拓扑上与大块双各向异性材料的高k特征函数h(k) = 0的零点和双各向异性介质根据双曲拓扑类的分类有关[32,33]。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ON FRESNEL-AIRY EQUATIONS, FABRY-PEROT RESONANCES AND SURFACE ELECTROMAGNETIC WAVES IN ARBITRARY BIANISOTROPIC METAMATERIALS
We introduce a theory of optical responses of bianisotropic layers with arbitrary effective medium parameters, which results in generalized Fresnel-Airy equations for reflection and transmission coefficients at all incidence directions and polarizations. The poles of these equations provide explicit expressions for the dispersion of Fabry-Perot resonances and surface electromatic waves in bianisotropic layers and interfaces. The existence conditions of these resonances are topologically related to the zeros of the high-k characteristic function h(k) = 0 of bulk bianisotropic materials and taxonomy of bianisotropic media according to the hyperbolic topological classes [32, 33].
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