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Hyperpolarizabilities of the methanol molecule: A CCSD calculation including vibrational corrections

机译:甲醇分子的超极化性:CCSD计算,包括振动校正

摘要

In this work we present the results for hyperpolarizabilities of the methanol molecule including vibrational corrections and electron correlation effects at the CCSD level. Comparisons to random phase approximation results previously reported show that the electron correlation is in general important for both electronic contribution and vibrational corrections. The role played by the anharmonicities on the calculations of the vibrational corrections has also been analyzed and the obtained results indicate that the anharmonic terms are important for the dc-Pockels and dc-Kerr effects. For the other nonlinear optical properties studied the double-harmonic approximation is found to be suitable. Comparison to available experimental result in gas phase for the dc-second harmonic generation second hyperpolarizability shows a very good agreement with the electronic contribution calculated here while our total value is 14% larger than the experimental value.
机译:在这项工作中,我们介绍了甲醇分子超极化性的结果,包括CCSD水平的振动校正和电子相关效应。与先前报道的随机相位近似结果的比较表明,电子相关性通常对于电子贡献和振动校正都非常重要。还分析了非谐函数在振动校正计算中的作用,获得的结果表明,非谐项对于dc-Pockels和dc-Kerr效应很重要。对于所研究的其他非线性光学性质,发现双谐波近似是合适的。与直流二次谐波产生二次超极化性的气相实验结果的比较表明,这里的电子贡献与此处计算的电子贡献非常吻合,而我们的总值比实验值大14%。

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