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Wavepacket Correlation Function Approach for Nonadiabatic Reactions: Quasi- Jahn-Teller Model

机译:非绝热反应的波包相关函数方法:拟Jahn-Teller模型

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摘要

Time-dependent formulations of the reactive scattering theory based on the wavepacket correlation functions with the Moller wavepackets for the electronically nonadiabatic reactions are presented. The calculations of state-to-state reactive probabilities for the quasi-Jahn-Teller scattering model system were performed. The conical intersection (CI) effects are investigated by comparing the results of the two-surface nonadiabatic calculations and the single surface adiabatic approximation. It was found that the results of the two-surface nonadiabatic calculations show interesting features in the reaction probability due to the conical intersection. Single surface adiabatic calculations with extended Born-Oppenheimer approximation using simple wavepacket phase factor was found to be able to reproduce the CI effect semi-quantitatively, while the single surface calculations with the usual adiabatic approximation cannot describe the scattering process for the Jahn-Teller model correctly.
机译:提出了基于时间包相关函数的反应性散射理论的时变公式,该函数基于与电子不绝热反应有关的Moller波包。进行了准Jahn-Teller散射模型系统的状态间反应概率的计算。通过比较两面非绝热计算和单面绝热近似的结果来研究圆锥交叉点(CI)的影响。已经发现,由于圆锥形相交,两面非绝热计算的结果在反应概率中显示出有趣的特征。发现使用简单波包相位因子通过扩展的Born-Oppenheimer近似进行单表面绝热计算能够半定量地再现CI效应,而使用常规绝热近似的单表面绝热计算无法描述Jahn-Teller模型的散射过程。正确地。

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