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双各向异性超材料中的波传播:角选择透射

Wave propagation in bianisotropic metamaterials: angular selective transmission.

作者信息

Chang Po-Han, Kuo Chih-Yu, Chern Ruey-Lin

出版信息

Opt Express. 2014 Oct 20;22(21):25710-21. doi: 10.1364/OE.22.025710.

Abstract

We investigate the basic features of wave propagation in bianisotropic metamaterials characterized by asymmetric magnetoelectric tensors with zero diagonal elements. The wave propagation is described by a biquadratic dispersion relation with two elliptically polarized eigenwaves. In particular, the bianisotropic media may possess a hybrid character of the elliptic and hyperbolic dispersions. For a wave incident from vacuum onto a bianisotropic medium, there exist an ordinary and an inversion critical angle, leading to angular selective transmission. A standard and a complementary type of angular selective transmissions are illustrated with the incidence of Gaussian beams based on Fourier integral formulation.

摘要

我们研究了由对角元素为零的非对称磁电张量表征的双各向异性超材料中波传播的基本特征。波传播由具有两个椭圆偏振本征波的双二次色散关系描述。特别地,双各向异性介质可能具有椭圆和双曲线色散的混合特性。对于从真空入射到双各向异性介质上的波,存在一个寻常临界角和一个反演临界角,导致角度选择性透射。基于傅里叶积分公式,用高斯光束的入射说明了一种标准类型和一种互补类型的角度选择性透射。

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