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Electromagnetic Scattering From 3D Layered Structures With Randomly Rough Interfaces: Analysis With the Small Perturbation Method and the Small Slope Approximation

机译:具有随机粗糙界面的3D分层结构的电磁散射:小扰动方法和小斜率近似分析

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We propose a theoretical study on the electromagnetic wave scattering from three-dimensional layered structures with an arbitrary number of rough interfaces by using the small perturbation method and the small slope approximation. The interfaces are characterized by Gaussian height distributions with zero mean values and Gaussian correlation functions. They can be correlated or not, isotropic or not. The electromagnetic field in each medium is represented by a continuum of plane waves and a perturbation theory is used for solving the boundary value problem and determining the first-order scattering amplitudes by recurrence relations. The scattering amplitudes under the first-order small slope approximation are deduced from results derived from the first-order small perturbation method. We analyze with the small slope approximation model the combined influence of the anisotropy and cross-correlation upon the electromagnetic signature of a natural stratified structure.
机译:我们提出了一种利用小扰动法和小斜率近似法对任意数量的粗糙界面的三维层状结构电磁波散射的理论研究。界面的特征是具有零平均值的高斯高度分布和高斯相关函数。它们可以是相关的,也可以不是各向同性的。每种介质中的电磁场均由连续的平面波表示,并且采用微扰理论来解决边值问题并通过递归关系确定一阶散射幅度。由一阶小扰动方法得出的结果推导出一阶小斜率近似下的散射幅度。我们用小斜率近似模型分析了各向异性和互相关对自然分层结构电磁特征的综合影响。

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