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Physics of polarized light scattering from weakly rough dielectric surfaces: Yoneda and Brewster scattering phenomena

机译:弱粗介质表面的偏振光散射物理:yoneda和Brewster散射现象

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The optical Yoneda and Brewster scattering phenomena are studied theoretically based on perturbative solutions of the reduced Rayleigh equations. The Yoneda phenomenon is characterized as an enhancement of the intensity of the diffuse light scattered by a randomly rough interface between two dielectric media when the light is observed in the optically denser medium. The intensity enhancement occurs above a critical angle of scattering which is independent of the angle of incidence of the excitation. The Brewster scattering phenomenon is characterized by a zero scattered intensity either in the reflected or transmitted light for an angle of scattering which depends on the angle of incidence. We also describe a generalization of the Brewster scattering phenomenon for outgoing evanescent waves and circularly polarized waves. The physical mechanisms responsible for these phenomena are described in terms of simple notions such as scalar waves, oscillating and rotating dipoles, and geometrical arguments, and are valid in a regime of weakly rough interfaces.
机译:理论上基于瑞利方程的扰动溶液理论上研究了光学yoneda和Brewster散射现象。 Yoneda现象的特征在于在光学密度介质中观察到光在光学密集介质中观察到光的两个介电介质之间的随机粗糙接口的漫射光的强度。强度增强发生在散射角度高于突出角度,其与激发的发生率无关。 Brewster散射现象的特征在于在反射或透射光中的零散射强度,用于散射角度,这取决于入射角。我们还描述了用于输出渐逝波和圆偏振波的布鲁斯特散射现象的概括。根据诸如标量波,振荡和旋转偶极子和几何参数的简单概念来描述负责这些现象的物理机制,并且在弱粗糙接口的制度中有效。

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