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Electromagnetic scattering from very rough random surfaces and deep reflection gratings

机译:来自非常粗糙的随机表面和深反射光栅的电磁散射

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摘要

A theoretical study of electromagnetic wave scattering from deep perfectly conducting one-dimensional random rough surfaces and reflection gratings is performed by means of the extinction theorem. The scattering equations are solved numerically (instead of being solved by the usual analytical procedures, which are valid only for slight corrugations). This permits us to obtain an exhaustive collection of results for the mean scattered intensity as a function of polarization and surface parameters. In particular, Lambertian scattering and enhanced backscattering are predicted for random surfaces. Also, the range of validity of the Kirchhoff approximation is established for random surfaces whose correlation length is comparable with or smaller than the wavelength. Concerning gratings, random surfaces whose correlation length is comparable with or smaller than the wavelength. Concerning gratings, is shown that the blaze of the antispecular order for gratings is at the root of the enhanced backscattering for random surfaces. © 1989 Optical Society of America
机译:利用消光定理,对深导电的一维随机粗糙表面和反射光栅的电磁波散射进行了理论研究。散射方程通过数值求解(而不是通过通常的分析程序求解,该方法仅对轻微的波纹有效)。这使我们可以获得详尽的平均散射强度作为极化和表面参数的函数的结果集合。特别地,对于随机表面,预测了朗伯散射和增强的反向散射。另外,对于相关长度等于或小于波长的随机表面,建立了基尔霍夫近似的有效范围。关于光栅,其相关长度等于或小于波长的随机表面。关于光栅,显示出光栅的反镜面光斑是随机表面增强后向散射的根源。 ©1989美国眼镜学会

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