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分层随机介质中布鲁斯特角的普遍偏移及p波的无序增强离域化

Universal shift of the Brewster angle and disorder-enhanced delocalization of p waves in stratified random media.

作者信息

Lee Kwang Jin, Kim Kihong

机构信息

Division of Energy Systems Research, Ajou University, Suwon 443-749, South Korea.

出版信息

Opt Express. 2011 Oct 10;19(21):20817-26. doi: 10.1364/OE.19.020817.

DOI:10.1364/OE.19.020817
PMID:21997091
Abstract

We study theoretically the propagation and the Anderson localization of p-polarized electromagnetic waves incident obliquely on randomly stratified dielectric media with weak uncorrelated Gaussian disorder. Using the invariant imbedding method, we calculate the localization length and the disorder-averaged transmittance in a numerically precise manner. We find that the localization length takes an extremely large maximum value at some critical incident angle, which we call the generalized Brewster angle. The disorder-averaged transmittance also takes a maximum very close to one at the same incident angle. Even in the presence of an arbitrarily weak disorder, the generalized Brewster angle is found to be substantially different from the ordinary Brewster angle in uniform media. It is a rapidly increasing function of the average dielectric permittivity and approaches 90° when the average relative dielectric permittivity is slightly larger than two. We make a remarkable observation that the dependence of the generalized Brewster angle on the average dielectric permittivity is universal in the sense that it is independent of the strength of disorder. We also find, surprisingly, that when the average relative dielectric permittivity is less than one and the incident angle is larger than the generalized Brewster angle, both the localization length and the disorder-averaged transmittance increase substantially as the strength of disorder increases in a wide range of the disorder parameter. In other words, the Anderson localization of incident p waves can be weakened by disorder in a certain parameter regime.

摘要

我们从理论上研究了p偏振电磁波斜入射到具有弱不相关高斯无序的随机分层介电介质时的传播和安德森局域化。使用不变嵌入方法,我们以数值精确的方式计算了局域化长度和无序平均透过率。我们发现,在某个临界入射角处,局域化长度会取到极大的最大值,我们将其称为广义布儒斯特角。无序平均透过率在相同入射角处也会取到非常接近1的最大值。即使存在任意弱的无序,广义布儒斯特角也被发现与均匀介质中的普通布儒斯特角有很大不同。它是平均介电常数的快速递增函数,当平均相对介电常数略大于2时趋近于90°。我们有一个显著的发现,即广义布儒斯特角对平均介电常数的依赖是普遍的,因为它与无序强度无关。令人惊讶的是,我们还发现,当平均相对介电常数小于1且入射角大于广义布儒斯特角时,在很宽的无序参数范围内,局域化长度和无序平均透过率都会随着无序强度的增加而大幅增加。换句话说,在特定参数区域内,无序可以削弱入射p波的安德森局域化。

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