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Full-dimensional quantum dynamics calculations for H+CHD3 - H-2 + CD3: The effect of multiple vibrational excitations

机译:H + CHD3 - &gt的全维量子动力学计算。 H-2 + CD3:多种振动激励的效果

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Initial state-selected reaction probabilities for the H + CHD3 - H-2 + CD3 reaction starting from various different ro-vibrational states of CHD3 are studied by accurate full-dimensional (12D) quantum dynamics calculation for vanishing total angular momentum (J = 0). The calculations employ the quantum transition state concept and the multi-layer multi-configurational time-dependent Hartree approach. First results focusing on fundamental excitations and the reactivity borrowing effect were communicated recently [R. Ellerbrock and U. Manthe, J. Chem. Phys. 147, 241104 (2017)]. In the present work, all vibrational states of the methane reactant are considered. It is found that energy deposited in overtones and combination bands is less efficient in promoting reactivity than expected from separable or sudden models. Furthermore, the effects of rotational excitation on the reactivity are studied in detail. Published by AIP Publishing.
机译:H + CHD3 - &GT的初始状态选择反应概率; 通过精确的全维(12D)量子动力学计算,研究了从CHD3的各种不同RO振动状态开始的H-2 + CD3反应,以消失总角度(J = 0)。 计算采用量子转换状态概念和多层多配置时间依赖的Hartree方法。 最近传达了专注于基本刺激和反应性借贷效应的首要结果[R. Ellerbrock和U. Manthe,J.Chem。 物理。 147,241104(2017)]。 在本作工作中,考虑所有致甲烷反应物的振动状态。 结果发现,在overtones和组合带中沉积的能量效率低于可分离或突然模型的反应性。 此外,详细研究了旋转激发对反应性的影响。 通过AIP发布发布。

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