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Theoretical resonant electron-impact vibrational excitation, dissociative recombination and dissociative excitation cross sections of ro-vibrationally excited BeH+ ion

机译:理论共振电子 - 冲击振动激发,离灭重组和RO-振动激发的分离激励截面截面+离子

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摘要

A theoretical study of resonant vibrational excitation, dissociative recombination and dissociative excitation processes of the beryllium monohydride cation, BeH+, induced by electron impact, is reported. Full sets of ro-vibrationally-resolved cross sections and of the corresponding Maxwellian rate coefficients are presented for the three processes. Particular emphasis is given to the high-energy behaviour. Potential curves of (2)Sigma(+), (2)Pi and (2)Delta symmetries and the corresponding resonance widths, obtained from R-matrix calculations, provide the input for calculations which use a local complex-potential model for resonant collisions in each of the three symmetries. Rotational motion of nuclei and isotopic effects are also discussed. The relevant results are compared with those obtained using a multichannel quantum defect theory method. Full results are available from the Phys4Entry database.
机译:据报道了通过电子撞击诱导的铍单氢化物阳离子,BEP +的共振振动激发,分离重组和离解型激发过程的理论研究。 对于三个过程,提出了全套RO-振动分辨的横截面和相应的MaxWellian速率系数。 特别强调高能量行为。 (2)Sigma(+),(2)Pi和(2)Δ对称的潜在曲线和从R矩阵计算获得的相应谐振宽度,为使用局部复杂电位模型进行谐振碰撞的计算提供了输入 在三个对称中的每一个中。 还讨论了核和同位素效应的旋转运动。 将相关结果与使用多通道量子缺陷理论方法获得的结果进行比较。 Phys4Entry数据库提供完整结果。

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