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Optical Kerr effect in graphene: Theoretical analysis of the optical heterodyne detection technique

机译:石墨烯中的光学克尔效应:光学外差检测技术的理论分析

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摘要

Graphene is an atomically thin two-dimensional material demonstrating strong optical nonlinearities, including harmonics generation, four-wave mixing, Kerr, and other nonlinear effects. In this paper we theoretically analyze the optical heterodyne detection (OHD) technique of measuring the optical Kerr effect (OKE) in two-dimensional crystals and show how to relate the quantities measured in such experiments with components of the third-order conductivity tensor σ_(αβγδ)~((3))(ω_1, ω_2, ω_3) of the two-dimensional crystal. Using results of a recently developed quantum theory of the third-order nonlinear electrodynamic response of graphene, we analyze the frequency, charge carrier density, temperature, and other dependencies of the OHD-OKE response of this material. We compare our results with a recent OHD-OKE experiment in graphene and find good agreement between the theory and experiment.
机译:石墨烯是原子薄的二维材料,具有很强的光学非线性,包括谐波产生,四波混合,克尔和其他非线性效应。在本文中,我们从理论上分析了用于测量二维晶体中光学Kerr效应(OKE)的光学外差检测(OHD)技术,并展示了如何将此类实验中测得的量与三阶电导张量σ_(二维晶体的αβγδ)〜((3))(ω_1,ω_2,ω_3)。使用石墨烯的三阶非线性电动力响应的最新开发的量子理论的结果,我们分析了这种材料的OHD-OKE响应的频率,电荷载流子密度,温度和其他相关性。我们将结果与最近在石墨烯中进行的OHD-OKE实验进行了比较,并在理论和实验之间找到了很好的一致性。

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