CH2的Renner-Teller耦合和态的新的从头算势能面

Haitao Ma, C. Zhang, Zhijun Zhang, Xiao-jun Liu, W. Bian
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引用次数: 5

摘要

本文提出了由Renner-Teller (RT)效应耦合并用于光谱研究的CH2的两个最低单重态和单重态的新的从头算势能面(PESs)。表面采用双层策略构建。使用aug-cc-pVQZ基集,采用内部收缩的多参考配置相互作用计算和Davidson校正,在较低水平获得3042个点。在从头计算中考虑了核心和核心价相关效应,并对更高能级点使用了改进的优化aug-cc-pCVQZ基集。通过计算点与三体展开的非线性最小二乘拟合,得到了这些包含非绝热RT项的ps的解析表达式。对这些粒子进行了量子动力学计算,计算得到的两个单重态电子态的振动能级与实验结果非常吻合。
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New ab Initio Potential Energy Surfaces for the Renner-Teller Coupled and States of CH2
New ab initio potential energy surfaces (PESs) for the two lowest-lying singlet ′ and ′′ electronic states of CH2, coupled by the Renner-Teller (RT) effect and meant for the spectroscopic study, are presented. The surfaces are constructed using a dual-level strategy. The internally contracted multireference configuration interaction calculations with the Davidson correction, using the aug-cc-pVQZ basis set, are employed to obtain 3042 points at the lower level. The core and core-valence correlation effects are taken into account in the ab initio calculations with a modified optimized aug-cc-pCVQZ basis set for the higher-level points. The analytical representations of these PESs, with the inclusion of the nonadiabatic RT terms, are obtained by the nonlinear least-squares fit of the calculated points to three-body expansion. Quantum dynamical calculations are performed on these PESs, and the computed vibronic energy levels for the two singlet electronic states are in excellent agreement with experiment.
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