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Saturation of the all-optical Kerr effect in solids

机译:固体中全光学克尔效应的饱和度

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We discuss the influence of the higher-order Kerr effect (HOKE) in wide bandgap solids at extreme intensities below the onset of optically induced damage. Using different theoretical models, we employ multiphoton absorption rates to compute the nonlinear refractive index by a Kramers-Kronig transform. Within this theoretical framework we provide an estimate for the appearance of significant deviations from the standard optical Kerr effect predicting a linear index change with intensity. We discuss the role of the observed saturation behavior in practically relevant situations, including Kerr lens mode-locking and supercontinuum generation in photonic crystal fibers. Furthermore, we present experimental data from a multiwave mixing experiment in BaF_(2), which can be explained by the appearance of the HOKE.
机译:我们讨论了高能级克尔效应(HOKE)在宽带隙固体中在低于光诱导损伤的极端强度下的影响。使用不同的理论模型,我们采用多光子吸收率通过Kramers-Kronig变换计算非线性折射率。在此理论框架内,我们提供了与标准光学Kerr效应显着偏离的估计值,预测了线性指数随强度的变化。我们讨论了在实际相关情况下观察到的饱和行为的作用,包括Kerr透镜锁模和光子晶体光纤中超连续谱的产生。此外,我们在BaF_(2)中提供了来自多波混合实验的实验数据,这可以通过HOKE的出现来解释。

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