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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Numerical simulation of electromagnetic wave scattering from planar dielectric films deposited on rough perfectly conducting substrates
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Numerical simulation of electromagnetic wave scattering from planar dielectric films deposited on rough perfectly conducting substrates

机译:沉积在粗糙完美导电基底上的平面介电膜电磁波散射的数值模拟

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Electromagnetic wave scattering from planar dielectric films deposited on one-dimensional, randomly rough, perfectly conducting substrates is studied by numerical simulations for both p- and s-polarization. The reduced Rayleigh equation, which is the integral equation satisfied by the scattering amplitude after eliminating the fields inside the film, is the starting point for the simulation. This equation is solved numerically by considering a random surface of finite length, and by introducing wave number cut-offs in the evanescent part of the spectrum. Upon discretization, a system of linear equations is obtained, and by solving this matrix system for an ensemble of surface realizations, the contribution to the mean differential reflection coefficient from the incoherently scattered field. [Left Angle Bracket] partial Rν/ partial θ [Right Angle Bracket] incoh (ν = p,s), is obtained nonperturbatively. It is demonstrated that when the scattering geometry supports at least two guided waves, [Left Angle Bracket] partial ν/ partial θ [Right Angle Bracket] incoh, has, in addition to the well-known enhanced backscattering peak, well-defined satellite peaks in agreement with theory, for most of the parameters considered.
机译:通过对p极化和s极化的数值模拟,研究了沉积在一维,随机粗糙,完美导电的基板上的平面电介质膜的电磁波散射。简化的瑞利方程是消除薄膜内部场后散射幅度满足的积分方程,是模拟的起点。通过考虑有限长度的随机表面并在频谱的渐逝部分引入波数截止值,可以用数值方法求解该方程。离散化后,获得了线性方程组,并通过求解该矩阵系统以实现整体表面实现,从非相干散射场对平均微分反射系数的贡献有所提高。 [左角括号]部分Rν/部分θ[直角括号] incoh(ν= p,s)是无扰动地获得的。证明了当散射几何结构支持至少两个导波时,[左角括号]部分ν/部分θ[[直角括号] incoh]除了众所周知的增强后向散射峰外,还具有定义明确的卫星峰与理论一致,考虑了大多数参数。

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