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Ab initio calculation of nonlinear optical properties for chiral carbon nanotubes. Second harmonic generation and dc-Pockels effect

机译:手性碳纳米管非线性光学性能的AB Initio计算。 二次谐波产生和DC-POCKELS效果

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Although the static first hyperpolarizability beta of graphene and chiral carbon nanotubes (CNTs) vanishes by symmetry, that is no longer true for frequency-dependent fields in which case there is a unique nonzero component. We evaluate that component for the dc-Pockels effect and second harmonic generation of several CNTs by means of the coupled perturbed Kohn-Sham method with the CAM-B3LYP functional as implemented in the CRYSTAL code. Both electronic and vibrational contributions are considered. Of particular interest is the frequency dependence in the region below the first resonance. Our results for the role of band gap, type of chirality, CNT radius and effect of orbital relaxation are analyzed using the conventional sum-over-states formulation in conjunction with the calculated band structure and density of states.
机译:尽管石墨烯和手性碳纳米管(CNT)的静态第一超极化性β通过对称性消失,但是对于频率相关领域不再是真的,在这种情况下,存在唯一的非零组件。 我们通过耦合的扰动Kohn-Sham方法评估DC-Pockels效应的组件和二次谐波产生几个CNT,与晶码中的凸轮B3Lyp功能。 考虑电子和振动贡献。 特别感兴趣的是在第一谐振下方的区域中的频率依赖性。 我们的结果对于带隙,手性型,CNT半径和轨道松弛的效果的作用,与常规总和的共同化结合计算的带结构和状态的密度。

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