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Effective model for nonlinear refraction and extinction coefficients in the presence of stimulated light scattering

机译:刺激光散射存在下非线性折射和消光系数的有效模型

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We present in this paper a wave-coupled model (WCM) to describe the effective nonlinear (NL) optical response of transparent materials illuminated by strong light beams in conditions such that stimulated light scattering is relevant. At low intensities, the WCM indicates that the NL scattering behaves similarly to a third- and fifth-order polarization susceptibility. However, at sufficiently high intensities, NL light scattering will lead to highly nonperturbative effective NL refraction and NL absorption coefficients. This is an important remark, given that attempts to explain NL scattering contributions as a perturbative NL response from data obtained at low intensities will become discrepant from the data obtained at high intensities. As an application of the model, we show that the existing divergent interpretations of the carbon disulfide (CS2) NL response in the picosecond and femtosecond regimes by several authors are consistent with the WCM, which indicates a direction for future experiments that may clarify the present controversy. (C) 2018 Optical Society of America
机译:我们在本文中呈现了一种波耦合模型(WCM),用于描述通过强光束在刺激的光散射相关的条件下通过强光束照射的有效非线性(NL)光学响应。在低强度下,WCM表示NL散射的行为与第三和第五阶偏振易感性类似。然而,在足够高的强度下,NL光散射将导致高度不受干扰的有效性N1折射和NL吸收系数。这是一个重要的言论,鉴于将NL散射贡献解释为从低强度获得的数据的扰动NL响应的捕获贡献将变得从高强度获得的数据变得差异。作为该模型的应用,我们认为,若干作者在PicoSecond和Femtosecond制度中存在的碳二硫化碳(CS2)NL反应的现有发散解释与WCM一致,这表明了可能澄清现在的未来实验的方向争议。 (c)2018年光学学会

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