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Enhanced optical Kerr effect method for a detailed characterization of the third-order nonlinearity of two-dimensional materials applied to graphene

机译:增强光学克尔效应方法,用于详细表征应用于石墨烯的二维材料的三阶非线性

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摘要

Using an enhanced optically heterodyned optical Kerr effect method and a theoretical description of the interactions between an optical beam, a single layer of graphene, and its substrate, we provide experimental answers to questions raised by theoretical models of graphene third-order nonlinear optical response. In particular, we measure separately the time response of the two main tensor components of the nonlinear susceptibility, we validate the assumption that the out-of-plane tensor components are small, and we quantify the optical impact of the substrate on the measured coefficients. Our method can be applied to other two-dimensional materials, as it relies mainly on the small ratio between the thickness and the wavelength.
机译:使用增强的光学杂化光学Kerr效应方法以及光束,单层石墨烯及其衬底之间相互作用的理论描述,我们为石墨烯三阶非线性光学响应的​​理论模型提出的问题提供了实验答案。特别是,我们分别测量了非线性磁化率的两个主要张量分量的时间响应,验证了平面外张量分量很小的假设,并量化了基板对测量系数的光学影响。我们的方法可以应用于其他二维材料,因为它主要依赖于厚度和波长之间的小比例。

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