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O₂(v)+O₂碰撞中的自旋-轨道耦合。II. 关于涉及O₂的X³Σg⁻、a¹Δg和b¹Σg⁺态的二聚体状态的量子散射计算。

Spin-orbit coupling in O2(v)+O2 collisions. II. Quantum scattering calculations on dimer states involving the X 3 Sigma g -, a 1 Delta g, and b 1 Sigma g + states of O2.

作者信息

Dayou Fabrice, Hernández Marta I, Campos-Martínez José, Hernández-Lamoneda Ramón

机构信息

Laboratoire d'Etude du Rayonnement et de la Matière en Astrophysique, UMR 8112 du CNRS, Observatoire de Paris-Meudon, 5 place Jules Janssen, 92195 Meudon Cedex, France.

出版信息

J Chem Phys. 2007 May 21;126(19):194309. doi: 10.1063/1.2734966.

DOI:10.1063/1.2734966
PMID:17523806
Abstract

The dynamics of collisional deactivation of O(2)(X (3)Sigma(g) (-),v=20-32) by O(2)(X (3)Sigma(g) (-),v(')=0) is investigated in detail by means of quantum-mechanical calculations. The theoretical approach involves ab initio potential energy surfaces correlating to the X (3)Sigma(g) (-), a (1)Delta(g), and b (1)Sigma(g) (+) states of O(2) and their corresponding spin-orbit couplings [F. Dayou, M. I. Hernandez, J. Campos-Martinez, and R. Hernandez-Lamoneda, J. Chem. Phys. 123, 074311 (2005)]. Accurate Rydberg-Klein-Rees potentials are included in order to improve the description of the vibrational structure of the fragments. The calculated Boltzmann-averaged depletion probabilities display a dependence with v in good agreement with experimental measurements. The onset of the vibrational-to-electronic (V-E) depletion mechanism is noticeable for v>/=26, and it is due to energy transfer to both a (1)Delta(g) and b (1)Sigma(g) (+) states of the diatom. For O(2)(X (3)Sigma(g) (-),v=28), a further and sharp increase in the removal probabilities is caused by a near degeneracy with the O(2)(b (1)Sigma(g) (+),v=19) vibrational state. Analysis of the temperature dependence of the Boltzmann-averaged probabilities indicates a transition from the vibrational-to-translational to the V-E energy transfer regime, which can be traced back to the behavior of the inelastic probabilities as functions of kinetic energy. Furthermore, branching ratios for outcomes through the three different electronic states show a strong propensity towards populating a unique vibrational level within each electronic state. These results provide supported evidence that spin-orbit couplings account for a large portion of the "dark channel" reported in total depletion measurements. New insight for further experimental and theoretical investigations is also given.

摘要

通过量子力学计算详细研究了O₂(X³Σg⁻, v = 20 - 32) 与O₂(X³Σg⁻, v' = 0) 的碰撞失活动力学。理论方法涉及与O₂的X³Σg⁻、a¹Δg和b¹Σg⁺态及其相应自旋 - 轨道耦合相关的从头算势能面[F. Dayou, M. I. Hernandez, J. Campos - Martinez, and R. Hernandez - Lamoneda, J. Chem. Phys. 123, 074311 (2005)]。为了改进对碎片振动结构的描述,包含了精确的里德堡 - 克莱因 - 里斯势能。计算得到的玻尔兹曼平均耗尽概率显示出与v的依赖关系,与实验测量结果吻合良好。对于v≥26,振动 - 电子(V - E)耗尽机制开始显著,这是由于能量转移到双原子的a¹Δg和b¹Σg⁺态。对于O₂(X³Σg⁻, v = 28),去除概率的进一步急剧增加是由与O₂(b¹Σg⁺, v = 19) 振动态的近简并引起的。对玻尔兹曼平均概率的温度依赖性分析表明,从振动 - 平动到V - E能量转移机制的转变,可以追溯到非弹性概率作为动能函数的行为。此外,通过三种不同电子态的结果分支比显示出强烈倾向于在每个电子态内填充唯一的振动能级。这些结果提供了支持性证据,表明自旋 - 轨道耦合在总耗尽测量中报告的“暗通道”中占很大一部分。还给出了对进一步实验和理论研究的新见解。

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