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阳离子碱二聚体与 He 相互作用的理论研究:Li-He 和 Na-He 范德华复合物。

Theoretical Study of Cationic Alkali Dimers Interacting with He: Li-He and Na-He van der Waals Complexes.

机构信息

Laboratory of Interfaces and Advanced Materials, Faculty of Science , University of Monastir , 5019 Monastir , Tunisia.

Department of Mathematics and Natural Sciences, School of Arts and Sciences , American University of Ras Al Khaimah , RAK , P.O. Box 10021 , UAE.

出版信息

J Phys Chem A. 2019 Sep 12;123(36):7814-7821. doi: 10.1021/acs.jpca.9b05551. Epub 2019 Sep 4.

Abstract

We present a theoretical study on the potential energy surface and bound states of He-A complexes, where A is one of the alkali Li or Na atoms. The intermolecular interactions were systematically investigated by high-level electronic structure computations, and the corresponding raw data were then employed to reproduce accurate analytical expressions of the potential surfaces. In turn, we used these potentials to evaluate bound configurations of the trimers from nuclear quantum calculations and to extract information on the effect of orientational anisotropy of the forces and the interplay between repulsive and attractive interaction within the potential surfaces. The spatial features of the bound states are analyzed and discussed in detail. We found that both systems are going under large amplitude stretching and bending motions with high zero-point energies. Despite the large differences in the potential well-depths, the correct treatment of nuclear quantum effects provides insights on the effect of different strength of the ionic interaction on the spectral structure of such cationic alkali van der Waals complexes, related to the mobility of ions and the formation of cold-molecules in He-controlled environments.

摘要

我们对 He-A 复合物(其中 A 是碱金属 Li 或 Na 原子之一)的势能面和束缚态进行了理论研究。通过高精度的电子结构计算系统地研究了分子间相互作用,并用相应的原始数据来再现势能面的精确解析表达式。反过来,我们使用这些势能从核量子计算中评估三聚体的束缚构型,并提取有关力的取向各向异性的影响以及势能面内排斥和吸引相互作用之间的相互作用的信息。详细分析和讨论了束缚态的空间特征。我们发现,这两个体系都经历了具有高零点能的大振幅伸缩和弯曲运动。尽管势能阱深度差异很大,但核量子效应的正确处理提供了关于离子相互作用强度对这种阳离子碱范德华复合物的光谱结构的影响的深入了解,这与离子的迁移率以及在 He 控制环境中形成冷分子有关。

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