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Nonlinear optical susceptibilities, Raman efficiencies, and electro-optic tensors from first-principles density functional perturbation theory

机译:基于第一原理密度泛函微扰理论的非线性光学磁化率,拉曼效率和电光张量

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摘要

The nonlinear response of infinite periodic solids to homogenous electric fields and collective atomic displacements is discussed in the framework of density functional perturbation theory. The approach is based on the 2n+1 theorem applied to an electric-field-dependent energy functional. We report the expressions for the calculation of the nonlinear optical susceptibilities, Raman scattering efficiencies, and electro-optic (EO) coefficients. Different formulations of third-order energy derivatives are examined and their convergence with respect to the k-point sampling is discussed. We apply our method to a few simple cases and compare our results to those obtained with distinct techniques. Finally, we discuss the effect of a scissors correction on the EO coefficients and nonlinear optical susceptibilities.
机译:在密度泛函摄动理论的框架下,讨论了无限周期固体对均匀电场和集体原子位移的非线性响应。该方法基于应用于电场相关能量函数的2n + 1定理。我们报告了用于计算非线性光学磁化率,拉曼散射效率和电光(EO)系数的表达式。研究了三阶能量导数的不同公式,并讨论了它们相对于k点采样的收敛性。我们将我们的方法应用于一些简单的案例,并将我们的结果与通过不同技术获得的结果进行比较。最后,我们讨论了剪刀校正对EO系数和非线性光学磁化率的影响。

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