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Ab initio Potential-Energy Surfaces and Electron-Spin-Exchange Cross Sections for H-O2 Interactions

机译:H-O2相互作用的从头算势能面和电子自旋交换截面

摘要

Accurate quartet- and doublet-state potential-energy surfaces for the interaction of a hydrogen atom and an oxygen molecule in their ground states have been determined from an ab initio calculation using large-basis sets and the internally contracted multireference configuration interaction method. These potential surfaces have been used to calculate the H-O2 electron-spin-exchange cross section; the square root of the cross section (in a(sub 0)), not taking into account inelastic effects, can be obtained approximately from the expressions 2.390E(sup -1/6) and 5.266-0.708 log10(E) at low and high collision energies E (in E(sub h)), respectively. These functional forms, as well as the oscillatory structure of the cross section found at high energies, are expected from the nature of the interaction energy. The mean cross section (the cross section averaged over a Maxwellian velocity distribution) agrees reasonably well with the results of measurements.
机译:从氢原子和氧分子在其基态相互作用的精确的四重态和双重态势能表面已经通过使用大基数集合和内部收缩多参考构型相互作用方法的从头算确定了。这些势能面已被用来计算H-O2电子自旋交换截面。不考虑非弹性效应的情况下,横截面的平方根(在a(sub 0)中)大约可以从表达式2.390E(sup -1/6)和5.266-0.708 log10(E)在低和低时获得。高碰撞能量E(单位为E(sub h))。这些功能形式以及在高能量下发现的横截面的振荡结构,是根据相互作用能的性质而预期的。平均横截面(在麦克斯韦速度分布上平均的横截面)与测量结果相当吻合。

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