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Diagrammatic approach to nonlinear optical response with application to Weyl semimetals

机译:用于Weyl Semimetals的非线性光学响应的​​图解方法

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Nonlinear optical responses are a crucial probe of physical systems including periodic solids. In the absence of electron-electron interactions, they are calculable with standard perturbation theory starting from the band structure of Bloch electrons, but the resulting formulas are often large and unwieldy, involving many energy denominators from intermediate states. This work gives a Feynman diagram approach to calculating nonlinear responses. This diagrammatic method is a systematic way to perform perturbation theory, which often offers shorter derivations and also provides a natural interpretation of nonlinear responses in terms of physical processes. Applying this method to second-order responses concisely reproduces formulas for the second-order-harmonic shift current. We then apply this method to third-order responses and derive formulas for third-order-harmonic generation and self-focusing of light, which can be directly applied to tight-binding models. Third-order responses in the semiclasscial regime include a Berry curvature quadrupole term, whose importance is discussed including symmetry considerations and when the Berry curvature quadrupole becomes the leading contribution. The method is applied to compute third-order optical responses for a model Weyl semimetal, where we find a new topological contribution that diverges in a clean material, as well as resonances with a peculiar linear character.
机译:非线性光学响应是物理系统的关键探针,包括周期性固体。在没有电子相互作用的情况下,它们可利用来自布勒电子的带结构开始的标准扰动理论,但是所得到的公式通常很大且笨重,涉及来自中间状态的许多能量分母。这项工作为计算非线性响应提供了Feynman图方法。该图形方法是执行扰动理论的系统方法,这通常提供较短的推导,并且还提供了在物理过程方面对非线性响应的自然解释。将该方法应用于二阶响应的简明再现二阶谐波偏移电流的公式。然后,我们将这种方法应用于三阶响应和推导式公式,用于三阶谐波产生和光的自体聚焦,可以直接应用于紧密绑定模型。半校长制度中的三阶响应包括浆果曲率四极限术语,其重要性包括对称考虑因素,并且当浆果曲率四极其成为主要贡献时。该方法应用于计算模型Weyl半型的三阶光学响应,在那里我们发现了一种新的拓扑贡献,这些拓扑贡献在清洁材料中发散,以及具有特殊线性特征的共振。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics 》 |2019年第4期| 045121.1-045121.20| 共20页
  • 作者单位

    Univ Calif Berkeley Dept Phys Berkeley CA 94720 USA;

    Univ Calif Berkeley Dept Phys Berkeley CA 94720 USA|Lawrence Berkeley Natl Lab Mat Sci Div Berkeley CA 94720 USA;

    Univ Calif Berkeley Dept Phys Berkeley CA 94720 USA|Lawrence Berkeley Natl Lab Mat Sci Div Berkeley CA 94720 USA;

    Univ Calif Berkeley Dept Phys Berkeley CA 94720 USA|Lawrence Berkeley Natl Lab Mat Sci Div Berkeley CA 94720 USA;

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