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Numerical studies of the transmission of light through a two-dimensional randomly rough interface

机译:通过二维随机粗糙界面传输光的数值研究

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摘要

The transmission of polarized light through a two-dimensional randomly rough interface between two dielectric media has been much less studied, by any approach, than the reflection of light from such an interface. We have derived a reduced Rayleigh equation for the transmission amplitudes when p- or s-polarized light is incident on this type of interface, and have obtained rigorous, purely numerical, nonperturbative solutions of it. The solutions are used to calculate the transmissivity and transmittance of the interface, the mean differential transmission coefficient, and the full angular distribution of the intensity of the transmitted light. These results are obtained for both the case where the medium of incidence is the optically less dense medium and in the case where it is the optically more dense medium. Optical analogues of Yoneda peaks observed in the scattering of x-rays from metallic and non-metallic surfaces are present in the results obtained in the former case. For p-polarized incident light we observe Brewster scattering angles, angles at which the diffuse transmitted intensity is zero in a single-scattering approximation, which depend on the angle of incidence in contrast to the Brewster angle for flat-surface reflection.
机译:通过两种方法在两个介电介质之间的二维随机粗糙界面上传输偏振光,与从这种界面反射光相比,都没有得到太多研究。当p或s偏振光入射到这种类型的界面上时,我们为透射幅度推导了简化的瑞利方程,并获得了严格的,纯数值的,非扰动的解。这些解决方案用于计算界面的透射率和透射率,平均微分透射系数以及透射光强度的完整角度分布。对于入射介质是光学上密度较小的介质的情况和光学介质上是光学密度较高的介质的情况,都可以获得这些结果。在前一种情况下获得的结果中存在在金属和非金属表面的X射线散射中观察到的Yoneda峰的光学类似物。对于p偏振入射光,我们观察到布鲁斯特散射角,即在单散射近似中漫透射强度为零的角度,该角度取决于入射角,而不是平面反射的布鲁斯特角。

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