首页> 外文OA文献 >Calculation of Franck-Condon factors including anharmonicity: simulation of the C2 H4+ X̃2B 3u←C2 H4X̃1 Ag band in the photoelectron spectrum of ethylene
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Calculation of Franck-Condon factors including anharmonicity: simulation of the C2 H4+ X̃2B 3u←C2 H4X̃1 Ag band in the photoelectron spectrum of ethylene

机译:包括非调和性在内的弗兰克-康登因子的计算:乙烯光电子能谱中C2 H4 + X̃2B 3u←C2 H4X̃1 Ag带的模拟

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摘要

Our new simple method for calculating accurate Franck-Condon factors including nondiagonal (i.e., mode-mode) anharmonic coupling is used to simulate the C2H4+X2B 3u←C2H4X̃1 Ag band in the photoelectron spectrum. An improved vibrational basis set truncation algorithm, which permits very efficient computations, is employed. Because the torsional mode is highly anharmonic it is separated from the other modes and treated exactly. All other modes are treated through the second-order perturbation theory. The perturbation-theory corrections are significant and lead to a good agreement with experiment, although the separability assumption for torsion causes the C2 D4 results to be not as good as those for C2 H4. A variational formulation to overcome this circumstance, and deal with large anharmonicities in general, is suggested
机译:我们使用一种新的简单方法来计算包括非对角(即模-模)非谐波耦合在内的精确弗兰克-康登因子,用于模拟光电子光谱中的C2H4 + X2B 3u←C2H4X̃1 Ag谱带。采用了改进的振动基集截断算法,该算法可进行非常有效的计算。由于扭转模态是高度非谐的,因此它与其他模态分开并进行了精确处理。所有其他模式都通过二阶微扰理论处理。扰动理论的修正非常重要,并且可以与实验很好地吻合,尽管扭转的可分离性假设导致C2 D4的结果不如C2 H4的结果。建议使用变体公式来克服这种情况,并通常处理较大的非谐性

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