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Development of calculation and analysis methods for the dynamic first hyperpolarizability based on the ab initio molecular orbital - Quantum master equation method

机译:从头算分子轨道开始的动态第一超极化率计算和分析方法的开发-量子主方程法

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We develop novel calculation and analysis methods for the dynamic first hyperpolarizabilities β [the second-order nonlinear optical (NLO) properties at the molecular level] in the second-harmonic generation based on the quantum master equation method combined with the ab initio molecular orbital (MO) configuration interaction method. As examples, we have evaluated off-resonant dynamic β values of donor (NH _2)- and/or acceptor (NO _2)-substituted benzenes using these methods, which are shown to reproduce those by the conventional summation-over-states method well. The spatial contributions of electrons to the dynamic β of these systems are also analyzed using the dynamic β density and its partition into the MO contributions. The present results demonstrate the advantage of these methods in unraveling the mechanism of dynamic NLO properties and in building the structure-dynamic NLO property relationships of real molecules.
机译:我们基于量子主方程方法结合从头算分子轨道(),为二次谐波生成中的动态第一超极化率β[在分子水平上的二阶非线性光学(NLO)特性]开发了新颖的计算和分析方法。 MO)配置交互方法。例如,我们使用这些方法评估了供体(NH _2)-和/或受体(NO _2)取代的苯的非共振动态β值,这些值可以很好地通过常规的总和法重现。 。还使用动态β密度及其划分为MO的贡献来分析电子对这些系统的动态β的空间贡献。目前的结果证明了这些方法在揭示动态NLO性质机理和建立真实分子的结构-动态NLO性质关系方面的优势。

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