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Hn(+)体系质子转移反应中的非绝热耦合与动力学:应用于H2 + H2(+)→H + H3(+)碰撞

Non-adiabatic couplings and dynamics in proton transfer reactions of Hn (+) systems: Application to H2+H2 (+)→H+H3 (+) collisions.

作者信息

Sanz-Sanz Cristina, Aguado Alfredo, Roncero Octavio, Naumkin Fedor

机构信息

Departamento de Química Física Aplicada (UAM), Unidad Asociada IFF-CSIC, Facultad de Ciencias C-XIV, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

Instituto de Física Fundamental, CSIC, C/ Serrano, 123, 28006 Madrid, Spain.

出版信息

J Chem Phys. 2015 Dec 21;143(23):234303. doi: 10.1063/1.4937138.

Abstract

Analytical derivatives and non-adiabatic coupling matrix elements are derived for Hn (+) systems (n = 3-5). The method uses a generalized Hellmann-Feynman theorem applied to a multi-state description based on diatomics-in-molecules (for H3 (+)) or triatomics-in-molecules (for H4 (+) and H5 (+)) formalisms, corrected with a permutationally invariant many-body term to get high accuracy. The analytical non-adiabatic coupling matrix elements are compared with ab initio calculations performed at multi-reference configuration interaction level. These magnitudes are used to calculate H2(v(')=0,j(')=0)+H2 (+)(v,j=0) collisions, to determine the effect of electronic transitions using a molecular dynamics method with electronic transitions. Cross sections for several initial vibrational states of H2 (+) are calculated and compared with the available experimental data, yielding an excellent agreement. The effect of vibrational excitation of H2 (+) reactant and its relation with non-adiabatic processes are discussed. Also, the behavior at low collisional energies, in the 1 meV-0.1 eV interval, of interest in astrophysical environments, is discussed in terms of the long range behaviour of the interaction potential which is properly described within the triatomics-in-molecules formalism.

摘要

推导了Hn(+)体系(n = 3 - 5)的解析导数和非绝热耦合矩阵元。该方法使用广义Hellmann-Feynman定理,应用于基于分子中双原子(对于H3(+))或分子中三原子(对于H4(+)和H5(+))形式的多态描述,并通过置换不变多体项进行修正以获得高精度。将解析非绝热耦合矩阵元与在多参考组态相互作用水平下进行的从头算计算结果进行了比较。这些量被用于计算H2(v(')=0,j(')=0)+H2(+)(v,j = 0)碰撞,通过带有电子跃迁的分子动力学方法确定电子跃迁的影响。计算了H2(+)几个初始振动态的截面,并与现有的实验数据进行比较,结果吻合得很好。讨论了H2(+)反应物振动激发的影响及其与非绝热过程的关系。此外,还根据分子中三原子形式能恰当描述的相互作用势的长程行为,讨论了在天体物理环境中感兴趣的1 meV - 0.1 eV碰撞能量区间内的低碰撞能量行为。

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