Ultracold charged atom-dimer collisions: state-selective charge exchange and three-body recombination

Amrendra Pandey, Romain Vexiau, Luis Gustavo Marcassa, Olivier Dulieu, Nadia Bouloufa-Maafa
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Abstract

Based on an accurate determination of the potential energy surfaces of Rb$_3^+$ correlated to its first asymptotic limit Rb$^+$$+$Rb($5s$)$+$Rb($5s$), we identify the presence of intersections of a pair of singlet and triplet surfaces over all interparticle distances, leading to Jahn-Teller couplings. We elaborate scenarios for charge exchange between ultracold charged atom-dimer complex (Rb$+$Rb$_2^+$ or Rb$^+$$+$Rb$_2$), predicting a strong selectivity on the preparation of the initial state of the dimer. We also demonstrate that the JT couplings must drive the three-body recombination (TBR) of Rb$^+$, Rb, and Rb at ultracold energies. Using the current analysis, we provide a consistent picture of the TBR experiments performed in ion-atom hybrid Rb samples \cite{dieterle2020inelastic,harter2012single}. We also demonstrate the presence of JT coupling as a general phenomenon in the singly-charged homonuclear alkali triatomic systems.
超冷带电原子-二聚体碰撞:状态选择性电荷交换和三体重组
在精确测定 Rb$_3^+$ 与其第一渐近极限 Rb$^+$+$Rb($5s$)$+$Rb($5s$) 相关的势能面的基础上,我们确定了在所有粒子间距离上存在一对单子面和三子面的交叉,从而导致了贾恩-泰勒耦合。我们提出了超冷带电原子-二聚体(Rb$+Rb$_2^+$ 或 Rb$^+$$+Rb$_2$)之间的电荷交换方案,预测二聚体初始状态的制备具有很强的选择性。我们还证明,在超冷能量下,JT 耦合必须驱动 Rb$^+$、Rb 和 Rb 的三体重组 (TBR)。利用当前的分析,我们提供了在离子-原子混合掺杂镱样品({dieterle2020inelastic,harter2012single})中进行的三体重组实验的一致描述。我们还证明了 JT 耦合是单电荷同核烷三原子系统中的一种普遍现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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