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Photodetachment spectroscopy of carbon doped anionic boron cluster, CB9-: A theoretical study

机译:碳掺杂阴离子硼簇的PhotoDetachment光谱,CB9-:理论研究

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The photodetachment spectroscopy of CB9- is theoretically studied in this paper. Extensive ab initio quantum chemistry calculations are carried out to construct the potential energy surfaces of the electronic ground and excited states of CB9. With the aid of these calculated adiabatic electronic energies, a vibronic coupling model is developed in a diabatic electronic basis and in terms of normal coordinates of vibrational modes following the standard vibronic coupling theory originally developed by Koppel et al. (1984). Employing the developed diabatic electronic model, first principles nuclear dynamics study is carried out to calculate the vibronic structure of photodetachment bands of CB9-. A systematic study is performed to elucidate the impact of electronic nonadiabatic effects on the photodetachment bands. The vibronic structure of the latter is assigned in terms of excitation of vibrational modes and the results are compared with the experimental findings. The internal conversion dynamics through conical intersections of electronic states is examined by analyzing the time-dependent electronic populations. The theoretical results are found to be in good agreement with the experimental data. The detailed theoretical study carried out here unambiguously supports the prediction of the global minimum structure of CB9-.
机译:本文理论上研究了CB9- CB9的光探测光谱。进行了广泛的AB初始量子化学计算,以构建CB9的电子地面和激发态的潜在能量表面。借助这些计算的绝热性电子能量,振动耦合模型是以糖尿病电子基础开发的,并且在由Koppel等人开发的标准颤动耦合理论之后的振动模式的正常坐标方面。 (1984)。采用发达的糖尿病电子模型,首先进行核动力学研究,以计算CB9-光电偶像带的颤音结构。进行系统研究以阐明电子非等压效应对光电偶然带的影响。后者的振动结构是在振动模式的激发方面分配的,结果与实验结果进行了比较。通过分析时间依赖的电子人群来检查通过电子国家的锥形交叉口的内部转换动态。发现理论结果与实验数据吻合良好。这里进行的详细理论研究明确地支持预测CB9-的全球最小结构。

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