Gianturco F A, Giri K, González-Sánchez L, Yurtsever E, Sathyamurthy N, Wester R
Institut für Ionenphysik und Angewandte Physik, Universität Innsbruck, Technikerstr. 25, A-6020 Innsbruck, Austria.
Department of Computational Sciences, Central University of Punjab, Bathinda 151001, India.
J Chem Phys. 2021 Feb 7;154(5):054311. doi: 10.1063/5.0040018.
Two different ab initio potential energy surfaces are employed to investigate the efficiency of the rotational excitation channels for the polar molecular ion HeH interacting with He atoms. We further use them to investigate the quantum dynamics of both the proton-exchange reaction and the purely rotational inelastic collisions over a broad range of temperatures. In current modeling studies, this cation is considered to be one of the possible cooling sources under early universe conditions after the recombination era and has recently been found to exist in the interstellar medium. The results from the present calculations are able to show the large efficiency of the state-changing channels involving rotational states of this cation. In fact, we find them to be similar in size and behavior to the inelastic and reaction rate coefficients obtained in previous studies, where H atoms were employed as projectiles. The same rotational excitation processes, occurring when free electrons are the collision partners of this cation, are also compared with the present findings. The relative importance of the reactive, proton-exchange channel and the purely inelastic channels is also analyzed and discussed. The rotational de-excitation processes are also investigated for the cooling kinetics of the present cation under cold trap conditions with He as the buffer gas. The implications of the present results for setting up more comprehensive numerical models to describe the chemical evolution networks in different environments are briefly discussed.
采用两种不同的从头算势能面来研究极性分子离子HeH与He原子相互作用时转动激发通道的效率。我们还利用它们来研究质子交换反应和纯转动非弹性碰撞在广泛温度范围内的量子动力学。在当前的建模研究中,这种阳离子被认为是复合时代后早期宇宙条件下可能的冷却源之一,并且最近已发现在星际介质中存在。当前计算结果能够表明涉及该阳离子转动状态的态变化通道具有很高的效率。事实上,我们发现它们在大小和行为上与先前研究中以H原子作为入射粒子时获得的非弹性和反应速率系数相似。当自由电子是该阳离子的碰撞伙伴时发生的相同转动激发过程也与当前的研究结果进行了比较。还分析和讨论了反应性质子交换通道和纯非弹性通道的相对重要性。在以He作为缓冲气体的冷阱条件下,还研究了该阳离子冷却动力学的转动去激发过程。简要讨论了当前结果对于建立更全面的数值模型以描述不同环境中化学演化网络的意义。