论文标题

阴离子原子反应中涉及偶极子电子的相关脱离

Associative detachment in anion-atom reactions involving a dipole-bound electron

论文作者

Hassan, Saba Zia, Tauch, Jonas, Kas, Milaim, Nötzold, Markus, Carrera, Henry Lopez, Endres, Eric S., Wester, Roland, Weidemüller, Matthias

论文摘要

阴离子和中性原子之间的联想电子脱离(AED)导致阴离子的电子脱离,导致形成中性分子。它在化学反应网络中起着关键作用,例如星际介质,地球的电离层和生化过程。在这里,通过精确控制电子激发的Rubidium的分数来研究一类涉及封闭阴离阴离子(OH^ - )和碱原子(Rubidium)的AED。与基态原子的反应产生了仅通过偶极力结合的电子的稳定中间复合物。该复合物的稳定性受绝热和绝热耦合在自动方案歧管中的微妙相互作用的控制。测得的速率系数与从头算的计算非常吻合,揭示了明显的空间效应。然而,对于激发态rubidium,观察到较低的反应速率,表明动态稳定过程抑制了耦合到自动方案区域。我们的工作对阴离子中性碰撞进行了严格测试,并构成了理解AED中电子状态依赖性动态的通用,概念框架。

Associative electronic detachment (AED) between anions and neutral atoms leads to the detachment of the anion's electron resulting in the formation of a neutral molecule. It plays a key role in chemical reaction networks, like the interstellar medium, the Earth's ionosphere and biochemical processes. Here, a class of AED involving a closed-shell anion (OH^-) and alkali atoms (rubidium) is investigated by precisely controlling the fraction of electronically excited rubidium. Reaction with the ground state atom gives rise to a stable intermediate complex with an electron solely bound via dipolar forces. The stability of the complex is governed by the subtle interplay of diabatic and adiabatic couplings into the autodetachment manifold. The measured rate coefficients are in good agreement with ab initio calculations, revealing pronounced steric effects. For excited state rubidium, however, a lower reaction rate is observed, indicating dynamical stabilization processes suppressing the coupling into the autodetachment region. Our work provides a stringent test of ab initio calculations on anion-neutral collisions and constitutes a generic, conceptual framework for understanding electronic state dependent dynamics in AEDs.

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