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首页> 外文期刊>The Journal of Chemical Physics >Time-dependent quantum mechanical calculations on H+O_2 for total angular momentum J O. III. Total cross sections
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Time-dependent quantum mechanical calculations on H+O_2 for total angular momentum J O. III. Total cross sections

机译:H + O_2上总角动量J> O的时间相关量子力学计算。三,总横截面

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摘要

The H+O_2->OH+O reaction has been studied with a time-dependent wave packet method for total angular momentum J=15, 20, 25, 35. This work is a continuation of previous studies for J<=10. The calculations were performed combining a real wave packet method with the Coriolis coupled method on parallel computers. We find that tor most energies there is a monotonic decrease of resaction probability with increasing J. Nevertheless, due to the 2J+1 degeneracy, higher angular momentum states contribute significantly to the total reaction cross section. A smoothing/interpolation/extrapolation scheme is employed to compute total reaction cross sections. These cross sections are compared with quasiclassical results on the same potential energy surface, and the most recent experimental cross sections. Comparisons with quasiclassical rsults show the significance of zero-point energy constraints. The quantum mechancal theoretical cross sections are smaller than the experimental ones everywhere, suggesting that a more accurate potential energy surface is required. There is also some possibility that nonadiabatic effects play a role in this reaction.
机译:已经使用时变波包方法研究了H + O_2-> OH + O反应,其总角动量J = 15、20、25、35。该工作是先前对J <= 10的研究的延续。在并行计算机上,结合了实际波包方法和科里奥利耦合方法来进行计算。我们发现,对于大多数能量,t 随着J的增加,反应概率单调降低。尽管如此,由于2J + 1简并性,较高的角动量态显着影响了总反应截面。平滑/插值/外推方案用于计算总反应截面。将这些横截面与同一势能面上的准经典结果以及最新的实验横截面进行比较。与准经典结果的比较显示了零点能量约束的重要性。量子力学的理论截面比任何地方的实验截面都要小,这表明需要更精确的势能面。非绝热作用也有可能在该反应中起作用。

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