首页> 外文期刊>The Journal of Chemical Physics >Nonadditive intermolecular forces in Ar_n-HF van der Waals clusters: Effects on the HF vibrational frequency shift
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Nonadditive intermolecular forces in Ar_n-HF van der Waals clusters: Effects on the HF vibrational frequency shift

机译:Ar_n-HF van der Waals团簇中的非加性分子间力:对HF振动频率偏移的影响

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The effects of nonadditive forces on Ar_n-HF van der Waals clusters are investigated for n = 2, 3, 4, and 12. The pair potentials operating in these systems are accurately known. Earlier models of nonadditive forces in Ar_2-HF, including nonadditive dispersion, induction, and overlap distortion, are generalized to handle clusters of arbitrary size. Calculations of vibrational frequency shifts (redshifts) are then performed and compared with experiment. The geometries of the clusters are first optimized by simulated annealing; the Ar_n cage is then held fixed, and the resulting five-dimensional Schrodinger equation is solved for the hindered rotational and translational motion of the HF molecule in the field of the Ar atoms. The nonadditive potentials are found to account remarkably well for the observed frequency shifts.
机译:对于n = 2、3、4和12,研究了非加力对Ar_n-HF van der Waals团簇的影响。在这些系统中运行的对势是准确已知的。 Ar_2-HF中非加性力的早期模型(包括非加性色散,感应和重叠畸变)被通用化以处理任意大小的簇。然后进行振动频率偏移(红移)的计算,并与实验进行比较。首先通过模拟退火对簇的几何形状进行优化。然后将Ar_n笼保持固定,并求解所得的五维Schrodinger方程,以解决HF分子在Ar原子场中受阻的旋转和平移运动。发现非可加电势对观察到的频移有很好的解释。

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