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Rotational excitation of water by hydrogen molecules: Comparison of results from classical and quantum mechanics

机译:氢分子对水的旋转激发:经典力学和量子力学的结果比较

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摘要

Quasiclassical trajectory calculations are carried out for rotational excitation of water by hydrogen molecules. State-to-state rate coefficients are determined at 100 K and are compared to available quantum results. A good agreement between classical and quantum rates is observed for downward transitions, with an average accuracy of classical results better than a factor of 2. It is thus found that the ambiguities described by Faure and Wiesenfeld [J. Chem. Phys. 121, 6771 (2004)] can be solved in the particular case of waterlike asymmetric-top molecules. (c) 2006 American Institute Of Physics.
机译:对氢分子对水的旋转激发进行了准经典轨迹计算。在100 K下确定状态速率系数,并将其与可用的量子结果进行比较。对于向下跃迁,可以观察到经典速率和量子速率之间的良好一致性,经典结果的平均准确度要好于2倍。因此,我们发现,Faure和Wiesenfeld所描述的歧义[J]。化学物理121,6771(2004)]可以在水样不对称顶部分子的特殊情况下解决。 (c)2006年美国物理研究所。

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