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Quadratic coupling treatment of the Jahn-Teller effect in the triply-degenerate electronic state of CH_4 ~+: Can one account for floppiness?

机译:CH_4〜+的三简并电子态的Jahn-Teller效应的二次耦合处理:能否解释松散?

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The Jahn-Teller (JT) coupling effects in the triply degenerate ground electronic state of methane radical cation are investigated theoretically within a quadratic vibronic coupling approach. The underlying potential energy surfaces over the two-dimensional space of nuclear coordinates, subject to the T_2 ?(e t_2 t_2) Jahn-Teller effect, are established from extensive ab initio calculations using the multi-reference configuration interaction method and then employed to determine the various parameters of a diabatic Hamiltonian of this system. Our previous investigation [T. Mondal and A. J. C. Varandas, J. Chem. Phys. 135, 174304 (2011)10.1063/1.3658641], relying on the linear vibronic coupling approach augmented by only a diagonal second-order term of the totally symmetric mode, are extended here by including all possible quadratic coupling constants of JT active e and t_2 modes. Inclusion of these quadratic couplings is found to be important to reproduce correctly the broad vibrational structure and for a better description of dynamical JT effect in the first vibronic band of this radical cation. The impact of large amplitude motions (which are responsible for floppiness of the molecule) on the vibronic structure and dynamics of the first photoelectron band have been examined via readjustment of their linear coupling parameters up to ±10.
机译:理论上,在二次振动耦合方法中研究了甲烷自由基阳离子在三重简并基态电子状态下的Jahn-Teller(JT)耦合效应。利用多参考构型相互作用方法,通过大量的从头算计算,建立了受T_2?(e t_2 t_2)Jahn-Teller效应影响的二维核坐标二维空间上的潜在势能面。该系统的非绝热哈密顿量的各种参数。我们之前的调查[T. Mondal和A.J.C. Varandas,J.Chem。物理135,174304(2011)10.1063 / 1.3658641],依靠线性振动耦合方法,仅通过完全对称模式的对角二阶项增强,在此扩展为包括JT active e和t_2模式的所有可能的二次耦合常数。发现包含这些二次耦合对于正确再现宽泛的振动结构以及更好地描述该自由基阳离子的第一振动带中的动态JT效应很重要。通过重新调节线性耦合参数(最大为±10),检查了大幅度运动(导致分子的蓬松性)对振动结构和第一光电子带动力学的影响。

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