首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Dissociative electron attachment and vibrational excitation of H-2 by low-energy electrons: Calculations based on an improved nonlocal resonance model. II. Vibrational excitation
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Dissociative electron attachment and vibrational excitation of H-2 by low-energy electrons: Calculations based on an improved nonlocal resonance model. II. Vibrational excitation

机译:低能电子对H-2的解离电子附着和振动激发:基于改进的非局部共振模型的计算。二。振动激发

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We treat vibrational excitation of hydrogen by low-energy electrons using an improved nonlocal resonance model. The model is based on accurate ab initio data for the (2)Sigma(+)(u) shape resonance and takes full account of the nonlocality of the effective potential for nuclear motion. Integral vibrational excitation cross sections were calculated for numerous initial and final rovibrational states of the hydrogen molecule, and the dependence of the vibrational excitation cross section on the rovibrational initial target state has been investigated. The vibrational excitation cross sections are in very good agreement with measurements for the transitions v=0 -> 1 and v=0 -> 2, while for higher vibrational channels the agreement is less satisfactory. However, the oscillatory structures in v=0 -> 4 vibrational excitation and higher channels predicted by Domcke and collaborators and measured by Allan are described by the present calculation, in very good agreement with the experimental data. A detailed analysis of the origin of the oscillations has been performed. It is shown that the oscillations can be qualitatively understood within the so-called boomerang model of Herzenberg. The resonance contribution to the vibrationally elastic scattering (v -> v) is also discussed. It is found that this cross section is dominated at low energies by the resonance contribution, as predicted by Schulz. The calculated integral vibrational excitation cross sections generally are in good agreement with other theoretical data obtained by different approaches. A comprehensive study of the effect of isotopic substitution has been performed, and an inverse isotope effect in vibrational excitation has been found for certain vibrational levels of the target.
机译:我们使用改进的非局部共振模型处理低能电子对氢的振动激发。该模型基于(2)Sigma(+)(u)形状共振的准确的从头算数据,并充分考虑了核运动有效电位的非局部性。计算了氢分子的许多初始和最终旋转振动状态的积分振动激发截面,并研究了振动激发截面对旋转初始目标状态的依赖性。振动激励的横截面与过渡v = 0-> 1和v = 0-> 2的测量非常吻合,而对于较高的振动通道,则一致性不太令人满意。然而,目前的计算描述了v = 0-> 4的振动激发和由Domcke和合作者预测并由Allan测量的较高通道的振荡结构,与实验数据非常吻合。进行了振荡起因的详细分析。结果表明,在所谓的黑森伯格回旋镖模型中可以定性地理解振荡。还讨论了共振对振动弹性散射的贡献(v-> v)。如舒尔茨所预言的,发现该横截面在低能量下由共振贡献所控制。计算得到的整体振动激励截面通常与通过不同方法获得的其他理论数据非常吻合。已经对同位素取代的影响进行了全面研究,并且发现了对于目标某些振动水平在振动激发中的同位素反作用。

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