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Ab initio analytical infrared intensities for periodic systems through a coupled perturbed Hartree-Fock/Kohn-Sham method

机译:通过耦合摄氏Hartree-Fock / Kohn-Sham方法对周期系统进行从头算起的红外分析强度

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摘要

A fully analytical method for calculating Born charges and, hence, infrared intensities of periodic systems, is formulated and implemented in the CRYSTAL program, which uses a local Gaussian type basis set. Our efficient formalism combines integral gradients with first-order coupled perturbed Hartree-Fock/Kohn Sham electronic response to an electric field. It avoids numerical differentiation with respect to wave vectors, as in some Berry phase approaches, and with respect to atomic coordinates. No perturbation equations for the atomic displacements need to be solved. Several tests are carried out to verify numerical stability, consistency in one, two, and three dimensions, and applicability to large unit cells. Future extensions to piezoelectricity and Raman intensities are noted.
机译:在CRYSTAL程序中制定并实现了一种用于计算Born电荷以及周期系统的红外强度的完全分析方法,该程序使用局部高斯类型基集。我们高效的形式主义将积分梯度与对电场的一阶耦合扰动Hartree-Fock / Kohn Sham电子响应相结合。它避免了像某些Berry相方法那样相对于波矢量和原子坐标的数值微分。不需要求解原子位移的摄动方程。进行了几项测试,以验证数值稳定性,一维,二维和三维的一致性,以及对大型晶胞的适用性。注意了压电性和拉曼强度的未来扩展。

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