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Second harmonic generation of light in the Kretschmann attenuated total reflection geometry in the presence of surface roughness

机译:在存在表面粗糙度的情况下,Kretschmann光中的二次谐波产生会衰减全反射几何形状

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摘要

Using a computer simulation approach we study the generation of second harmonic light in reflection and in transmission in the Kretschmann attenuated total reflection geometry. In this geometry a thin metal film is deposited on the planar base of a dielectric prism, through which p-polarized light is incident on the film. The back surface of the film, which separates the film from vacuum, is a one-dimensional, randomly rough surface, whose generators are normal to the plane of incidence of the light. The nonlinearity responsible for the second harmonic generation is assumed to arise at the prism-metal and metal-vacuum interfaces, and thus enters the problem only through the boundary conditions at these interfaces at the harmonic frequency. The source terms entering these boundary conditions are obtained from the solutions of the corresponding scattering and transmission problems at the fundamental frequency. It is found that a peak in the angular dependence of the intensity of both the transmitted and reflected second harmonic light occurs in the directions normal to the mean scattering surface, in addition to an enhanced backscattering peak in the retroreflection direction. The enhanced transmission peak occurs in the non-radiative region, and therefore cannot be observed in the far field. [References: 42]
机译:使用计算机仿真方法,我们研究了在Kretschmann衰减全反射几何结构中反射和透射中二次谐波光的生成。在这种几何形状中,金属薄膜沉积在电介质棱镜的平面基底上,p偏振光通过该金属薄膜入射在薄膜上。将薄膜与真空隔离开的薄膜背面是一维随机粗糙的表面,其生成器垂直于光的入射平面。假定引起二次谐波产生的非线性在棱镜-金属和金属-真空界面处产生,因此仅通过这些界面在谐波频率处的边界条件就产生了问题。进入这些边界条件的源项是从基频上相应的散射和传输问题的解中获得的。已经发现,除了在回射方向上的增强的反向散射峰之外,在垂直于平均散射表面的方向上还出现了透射的和反射的二次谐波光的强度的角度依赖性的峰。增强的透射峰出现在非辐射区域,因此无法在远场中观察到。 [参考:42]

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