Mathea Tina, Rauhut Guntram
Institut für Theoretische Chemie, Universität Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart, Germany.
J Chem Phys. 2020 May 21;152(19):194112. doi: 10.1063/5.0009732.
The assignment of vibrational states is an integral part of quantum chemical calculations, which supports the analysis of experimental infrared spectra. In variational calculations, usually, it is the leading coefficient of the configuration interaction vector, which provides the state identity. However, this concept will possibly fail in case of special coordinate systems, such as, for example, localized normal coordinates, or within calculations for overtones of non-Abelian molecules, when a real valued configuration basis has been employed. A combination of both renders a proper assignment fairly tedious. We present a route to overcome this problem by using a highly efficient calculation of multidimensional overlap integrals based on the Smolyak quadrature. Beside this, a general protocol for the symmetry assignment of vibrational states will be discussed, which completes a general assignment. Extensive benchmark calculations are provided for the fundamental modes and overtones of chloromethane, CHCl, in canonical and localized normal coordinates based on accurate potential energy surfaces obtained from explicitly correlated coupled-cluster theory. In addition, the linear CNNC molecule has been studied, for which hardly any reference data do exist.
振动状态的分配是量子化学计算不可或缺的一部分,它有助于对实验红外光谱进行分析。在变分计算中,通常是组态相互作用向量的首项系数提供了态的标识。然而,在特殊坐标系下,比如局部正则坐标,或者在使用实值组态基对非阿贝尔分子的泛音进行计算时,这个概念可能会失效。两者结合使得正确的分配相当繁琐。我们提出了一种基于斯莫利亚克求积法高效计算多维重叠积分来克服这个问题的方法。除此之外,还将讨论一种振动状态对称分配的通用方案,它完善了一般分配。基于从显式相关耦合簇理论获得的精确势能面,对氯甲烷(CHCl)的基模和泛音在正则和局部正则坐标下进行了广泛的基准计算。此外,还研究了几乎没有任何参考数据的线性CNNC分子。