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Enhanced back and forward scattering in the reflection of light from weakly rough random metal surfaces

机译:弱粗糙随机金属表面的光反射增强了前后散射

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摘要

The scattering of light from a weakly rough random silver surface characterized by a double rectangular power spectrum is studied by numerical simulations. This power spectrum can support both the enhanced back and forward scattering phenomena, which for weakly rough surfaces, are both related to the excitation of surface plasmon polaritons. Here we review these phenomena and present new results from a numerical study of the dependence of the diffuse scattering on the amplitudes (γi, i=1, 2) of the two rectangular portions of the power spectrum. It is found that there exist an optimal range of ratios, γ2/γ1, over which forward scattering peaks can be observed. By just changing the correlations along the interface, while keeping all other parameters like roughness, polarization, and angle of incidence unchanged, the fraction of the incident light that is scattered diffusely can be as large as 16%, while for other parameters as small as 1%. Moreover, a change in the correlation function only, can result in a 3.5 times increase in the amount of light that is absorbed at the weakly rough metal interface (s=10 nm).
机译:通过数值模拟研究了来自弱粗糙随机银表面的光的散射,该表面具有双矩形功率谱。该功率谱可以支持增强的后向散射和前向散射现象,这对于弱粗糙的表面都与表面等离激元极化子的激发有关。在这里,我们对这些现象进行回顾,并从数值研究散射光谱对功率谱两个矩形部分的振幅(γi,i = 1,2)的依赖性中得出新的结果。发现存在最佳比值范围γ2/γ1,在该范围内可以观察到前向散射峰。通过仅改变沿界面的相关性,同时保持所有其他参数(如粗糙度,偏振和入射角)不变,散射散射的入射光的比例可以高达16%,而对于其他参数则可以小至16%。 1%。而且,仅相关函数的改变会导致在弱粗糙金属界面(s = 10 nm)处吸收的光量增加3.5倍。

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