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基于非阿贝尔分子的正则坐标和定域正则坐标的VCI计算:丙二烯振动泛音的精确归属

VCI Calculations Based on Canonical and Localized Normal Coordinates for Non-Abelian Molecules: Accurate Assignment of the Vibrational Overtones of Allene.

作者信息

Mathea Tina, Petrenko Taras, Rauhut Guntram

机构信息

Institute for Theoretical Chemistry, University of Stuttgart, Pfaffenwaldring 55, 70569 Stuttgart, Germany.

出版信息

J Phys Chem A. 2021 Feb 4;125(4):990-998. doi: 10.1021/acs.jpca.0c10429. Epub 2021 Jan 22.

Abstract

Vibrational configuration interaction calculations (VCI) have been performed to study the impact of the nature of the underlying coordinate systems, i.e., canonical vs localized normal coordinates, on accurate vibrational structure calculations for non-Abelian molecules. Once the correlation space is represented by real-valued primitive Hartree products, the assignment of vibrational states beyond the fundamentals is usually a tedious task and is further complicated by the use of non-symmetry-adapted coordinates. Our recently presented approach based on sparse grid integration of overlap integrals of the VCI wave function with the corresponding harmonic oscillator wave function has been used to determine and assign all fundamentals and vibrational overtones of allene and its deuterated isotopologue. Excellent agreement with available experimental results is observed in all cases.

摘要

已进行振动组态相互作用计算(VCI),以研究基础坐标系的性质(即正则与定域简正坐标)对非阿贝尔分子精确振动结构计算的影响。一旦相关空间由实值原始哈特里积表示,确定基频以上的振动态通常是一项繁琐的任务,并且使用非对称适配坐标会使其进一步复杂化。我们最近提出的基于VCI波函数与相应谐振子波函数重叠积分的稀疏网格积分方法,已用于确定并指定丙二烯及其氘代同位素体的所有基频和振动泛音。在所有情况下均观察到与现有实验结果的极佳吻合。

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