超极化率
耦合簇
化学
极化连续介质模型
非线性光学
非线性系统
分子物理学
瑞利散射
分子对称性
计算化学
球谐函数
分子
散射
极化率
物理
量子力学
溶剂化
作者
Frédéric Castet,Elena Bogdan,Aurélie Plaquet,Laurent Ducasse,Benoı̂t Champagne,Vincent Rodriguez
摘要
Hyper-Rayleigh scattering (HRS) experiments and quantum chemical calculations are combined to investigate the second-order nonlinear optical responses of a series of reference molecules, namely, carbon tetrachloride, chloroform, trichloroacetonitrile, acetonitrile, and dichloromethane. The multipolar decomposition of the first hyperpolarizability tensor through the use of the spherical harmonics formalism is employed to highlight the impact of the symmetry of the molecular scatterers on their nonlinear optical responses. It is demonstrated that HRS is a technique of choice to probe the molecular symmetry of the compounds. Coupled-cluster calculations performed at the coupled-cluster level with singles, doubles, and perturbative triples in combination with highly extended basis sets and including environment effects by using the polarizable continuum model qualitatively reproduce the molecular first hyperpolarizabilities and depolarization ratios of the molecular scatterers.
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