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首页> 外文期刊>The Astrophysical journal >Classical and Quantum-Mechanical Calculations of HCO+ + e → CO(v) + H
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Classical and Quantum-Mechanical Calculations of HCO+ + e → CO(v) + H

机译:HCO + + e→CO(v)+ H的经典和量子力学计算

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It has been suggested that interstellar CO produced in the dissociative recombination between HCO+ and electrons can be detected via infrared emission from excited vibrational levels. Using classical and quantum mechanical equations of motion, we have calculated the distribution of CO product vibrational states for the dissociative recombination reaction between HCO+ and electrons. We have assumed the dissociation to occur along a purely linear geometry. The CO vibrational distribution has been calculated for two electronic states: (1) the ground X1Σ+ state and (2) the excited a3Π state. For the X state, we have used a newly calculated ab initio potential surface for the dissociation of HCO. Results for the a state can be compared with the results of experimental work by Adams and collaborators. Our results show that in general vibrational excitation of the CO product is not large, so that detection of infrared emission from interstellar clouds will not be facile.
机译:已经提出,可以通过激发振动能级的红外发射来检测HCO +和电子之间的解离重组产生的星际CO。使用运动的经典和量子力学方程,我们计算出了HCO +与电子之间的离解重组反应,CO产物振动态的分布。我们已经假设解离是沿着纯线性几何发生的。已经针对两种电子状态计算了CO振动分布:(1)基态X1Σ+状态和(2)激发a3Π状态。对于X状态,我们使用了新计算的从头算势面来解离HCO。 a状态的结果可以与Adams和合作者的实验结果进行比较。我们的结果表明,一般而言,CO产物的振动激发并不大,因此无法方便地检测星际云的红外辐射。

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