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首页> 外文期刊>Waves in Random Media >Multiple scattering in the high-frequency limit with second-order shadowing function from 2D anisotropic rough dielectric surfaces: I. Theoretical study
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Multiple scattering in the high-frequency limit with second-order shadowing function from 2D anisotropic rough dielectric surfaces: I. Theoretical study

机译:二维各向异性粗糙电介质表面具有二阶阴影函数的高频极限中的多重散射:I.理论研究

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In this paper the first- and second-order Kirchhoff approximation is applied to study the backscattering enhancement phenomenon, which appears when the surface rms slope is greater than 0.5. The formulation is reduced to the geometric optics approximation in which the second-order illumination function is taken into account. This study is developed for a two-dimensional (2D) anisotropic stationary rough dielectric surface and for any surface slope and height distributions assumed to be statistically even. Using the Weyl representation of the Green function (which introduces an absolute value over the surface elevation in the phase term), the incoherent scattering coefficient under the stationary phase assumption is expressed as the sum of three terms. The incoherent scattering coefficient then requires the numerical computation of a ten-dimensional integral. To reduce the number of numerical integrations, the geometric optics approximation is applied, which assumes that the correlation between two adjacent points is very strong. The model is then proportional to two surface slope probabilities, for which the slopes would specularly reflect the beams in the double scattering process. In addition, the slope distributions are related with each other by a propagating function, which accounts for the second-order illumination function. The companion paper is devoted to the simulation of this model and comparisons with an 'exact' numerical method.
机译:本文采用一阶和二阶Kirchhoff逼近来研究反向散射增强现象,该现象在表面均方根斜率大于0.5时出现。该公式简化为考虑了二级照明功能的几何光学近似值。这项研究是针对二维(2D)各向异性固定粗糙电介质表面以及假定统计上均匀的任何表面坡度和高度分布而开发的。使用格林函数的Weyl表示(在相位项中引入了整个表面高度上的绝对值),将固定相假设下的非相干散射系数表示为三个项的总和。然后,非相干散射系数需要对十维积分进行数值计算。为了减少数值积分的数量,应用了几何光学近似,它假定两个相邻点之间的相关性非常强。然后,该模型与两个表面坡度概率成比例,这两个坡度将在两次散射过程中镜面反射光束。另外,斜率分布通过传播函数相互关联,该传播函数说明了二阶照明函数。随附的论文致力于该模型的仿真,并与“精确”数值方法进行比较。

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