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Numerical studies of the scattering of light from a two-dimensional randomly rough interface between two dielectric media

机译:两种介质介质中二维随机粗糙界面光散射的数值研究

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摘要

The scattering of polarized light incident from one dielectric medium on its two-dimensional randomly rough interface with a second dielectric medium is studied. A reduced Rayleigh equation for the scattering amplitudes is derived for the case where p- or s-polarized light is incident on this interface, with no assumptions being made regarding the dielectric functions of the media. Rigorous, purely numerical, nonperturbative solutions of this equation are obtained. They are used to calculate the reflectivity and reflectance of the interface, the mean differential reflection coefficient, and the full angular distribution of the intensity of the scattered 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 analogs of the Yoneda peaks observed in the scattering of x rays from metal surfaces are present in the results obtained in the latter case. Brewster scattering angles for diffuse scattering are investigated, reminiscent of the Brewster angle for flat-interface reflection, but strongly dependent on the angle of incidence. When the contribution from the transmitted field is added to that from the scattered field it is found that the results of these calculations satisfy unitarity with an error smaller than 10^(−4).
机译:研究了从一种介电介质入射的偏振光在其与第二种介电介质的二维随机粗糙界面上的散射。对于p或s偏振光入射到该界面的情况,可以得出散射幅度的简化Rayleigh方程,无需假设介质的介电功能。获得了该方程的严格的,纯数值的,非扰动的解。它们用于计算界面的反射率和反射率,平均微分反射系数以及散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。在后一种情况下获得的结果中存在在金属表面X射线散射中观察到的Yoneda峰的光学类似物。研究了用于漫散射的布鲁斯特散射角,让人联想到用于平面界面反射的布鲁斯特角,但强烈依赖于入射角。当将来自发射场的贡献与来自散射场的贡献相加时,发现这些计算的结果满足单一性,并且误差小于10 ^(-4)。

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