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各向异性薄膜中不均匀性和表面粗糙度引起的偏振光散射

Polarized optical scattering by inhomogeneities and surface roughness in an anisotropic thin film.

作者信息

Germer Thomas A, Sharma Katelynn A, Brown Thomas G, Oliver James B

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2017 Nov 1;34(11):1974-1984. doi: 10.1364/JOSAA.34.001974.

DOI:10.1364/JOSAA.34.001974
PMID:29091646
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5729762/
Abstract

We extend the theory of Kassam et al. [J. Opt. Soc. Am. A12, 2009 (1995)JOAOD60740-323210.1364/JOSAA.12.002009] for scattering by oblique columnar structure thin films to include the induced form birefringence and the propagation of radiation in those films. We generalize the 4×4 matrix theory of Berreman [J. Opt. Soc. Am.62, 502 (1972)JOSAAH0030-394110.1364/JOSA.62.000502] to include arbitrary sources in the layer, which are necessary to determine the Green function for the inhomogeneous wave equation. We further extend first-order vector perturbation theory for scattering by roughness in the smooth surface limit, when the layer is anisotropic. Scattering by an inhomogeneous medium is approximated by a distorted Born approximation, where effective medium theory is used to determine the effective properties of the medium, and strong fluctuation theory is used to determine the inhomogeneous sources. In this manner, we develop a model for scattering by inhomogeneous films, with anisotropic correlation functions. The results are compared with Mueller matrix bidirectional scattering distribution function measurements for a glancing-angle deposition (GLAD) film. While the results are applied to the GLAD film example, the development of the theory is general enough that it can guide simulations for scattering in other anisotropic thin films.

摘要

我们扩展了卡萨姆等人[《美国光学学会志》A12,2009(1995);JOAOD60740 - 3232;10.1364/JOSAA.12.002009]关于倾斜柱状结构薄膜散射的理论,以纳入诱导形式双折射以及辐射在这些薄膜中的传播。我们推广了贝里曼的4×4矩阵理论[《美国光学学会志》62,502(1972);JOSAAH0030 - 3941;10.1364/JOSA.62.000502],使其包含层内的任意源,这些源对于确定非齐次波动方程的格林函数是必要的。当层为各向异性时,我们进一步扩展了光滑表面极限下粗糙度散射的一阶矢量微扰理论。非均匀介质的散射通过扭曲玻恩近似来近似,其中有效介质理论用于确定介质的有效性质,强涨落理论用于确定非均匀源。通过这种方式,我们建立了一个具有各向异性相关函数的非均匀薄膜散射模型。将结果与掠角沉积(GLAD)薄膜的穆勒矩阵双向散射分布函数测量结果进行了比较。虽然结果应用于GLAD薄膜示例,但该理论的发展具有足够的通用性,能够指导其他各向异性薄膜散射的模拟。