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F2O光电子能谱中电子非绝热跃迁的理论研究。

Theoretical study of the electronic nonadiabatic transitions in the photoelectron spectroscopy of F2O.

作者信息

Krishnan Gireesh M, Ghosal Subhas, Mahapatra Susanta

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.

出版信息

J Phys Chem A. 2006 Jan 26;110(3):1022-30. doi: 10.1021/jp0543882.

Abstract

The photoelectron spectrum of F2O pertaining to ionizations to the ground (X2B1) and low-lying excited electronic states (A2B2, B2A1, and C2A2) of F2O+ is investigated theoretically. The near equilibrium potential energy surfaces of the ground electronic state (X2B1) of F2O and the mentioned ground and excited electronic states of F2O+ reported by Wang et al. ( J. Chem. Phys. 2001, 114, 10682) for the C2v configuration are extended for the Cs geometry assuming a harmonic vibration along the asymmetric stretching mode. The vibronic interactions between the A2B2 and B2A1 electronic states of F2O+ are treated within a linear coupling approach, and the strength of the vibronic coupling parameter is calculated by an ab initio method. The nuclear dynamics is simulated by both time-independent quantum mechanical and time-dependent wave packet approaches. Although the first photoelectron band exhibits resolved vibrational progression along the symmetric stretching mode, the second one is highly overlapping. The latter is attributed to the nonadiabatic interactions among the energetically close A2B2, B2A1, and C2A2 electronic states of F2O+. The theoretical findings are in good accord with the available experimental results.

摘要

从理论上研究了F2O的光电子能谱,该能谱与F2O+的基态(X2B1)以及低激发电子态(A2B2、B2A1和C2A2)的电离有关。假设沿不对称拉伸模式进行简谐振动,将Wang等人(《化学物理杂志》,2001年,第114卷,第10682页)报道的C2v构型的F2O基态电子态(X2B1)以及上述F2O+的基态和激发态电子态的近平衡势能面扩展到Cs几何构型。F2O+的A2B2和B2A1电子态之间的振转相互作用采用线性耦合方法处理,振转耦合参数的强度通过从头算方法计算。采用与时间无关的量子力学方法和含时波包方法对核动力学进行了模拟。虽然第一个光电子能带沿对称拉伸模式呈现出分辨的振动进展,但第二个光电子能带高度重叠。后者归因于F2O+的能量相近的A2B2、B2A1和C2A2电子态之间的非绝热相互作用。理论研究结果与现有的实验结果吻合良好。

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