论文标题
电子结构,光谱,冷离子 - 原子弹性碰撞特性和光相关形成(MGC)$^+$分子离子的预测
Electronic structure, spectroscopy, cold ion-atom elastic collision properties and photoassociation formation prediction of (MgCs)$^+$ molecular ion
论文作者
论文摘要
关于低能能下碱原子与碱土离子之间相互作用的研究在冷化学领域很重要。在本文中,我们广泛研究(MGC)$^+$分子离子的结构,相互作用和动力学。我们根据Mg $^{2+} $和CS $^+$内核的非经验伪势的形式主义使用Ab tribio方法,大高斯基集和完整的价配置交互。在这种情况下,(MGC)$^+$ cation被视为有效的两电子系统。势能曲线及其光谱常数为$^{1,3}σ^+$,$^{1,3}π$和$^{1,3}Δ$对称性的前41个激发态。此外,我们确定了$^{1,3}σ^+$和$^{1,3}π$ symmetries的电子状态之间的避免穿越。这些交叉与两个离子限制Mg/cs $^+$和mg $^+$/cs之间的充电转移过程有关。此外,还提供和分析了振动级别的间距,过渡和永久偶极矩。使用产生的势能数据,进行了广泛的能量范围的地面散射波函数和弹性横截面。此外,我们通过刺激的拉曼类型工艺在基态电子势能中预测地基和旋转冷分子离子(MGC) +的形成。在低能极限(<1 MK)中,弹性散射横截面表现出Wigner定律阈值行为;而在高能中,跨部分作为能量E的函数,如e $^{ - 1/3} $。提出了关于形成冷(MGC)$^+$分子离子的定性讨论。
Studies on the interactions between an alkali atom and an alkaline earth ion at low energy are important in the field of cold chemistry. In this paper we, extensively, study the structure, interactions, and dynamics of (MgCs)$^+$ molecular ion. We use an ab initio approach based on the formalism of non-empirical pseudo-potential for Mg$^{2+}$ and Cs$^+$ cores, large Gaussian basis sets and full valence configuration interaction. In this context, the (MgCs)$^+$ cation is treated as an effective two-electron system. Potential energy curves and their spectroscopic constants for the ground and the first 41 excited states of $^{1,3}Σ^+$, $^{1,3}Π$ and $^{1,3}Δ$ symmetries are determined. Furthermore, we identify the avoided crossings between the electronic states of $^{1,3}Σ^+$ and $^{1,3}Π$ symmetries. These crossings are related to the charge transfer process between the two ionic limits Mg/Cs$^+$ and Mg$^+$/Cs. In addition, vibrational-level spacings, the transition and permanent dipole moments are presented and analysed. Using the produced potential energy data, the ground-state scattering wave functions and elastic cross sections for a wide range of energies are performed. Furthermore, we predict the formation of translationally and rotationally cold molecular ion (MgCs) + in the ground state electronic potential energy by stimulated Raman type process aided by ion-atom cold collision. In the low energy limit (< 1 mK), elastic scattering cross sections exhibit Wigner law threshold behaviour; while in the high energy limit the cross sections as a function of energy E go as E$^{-1/3}$. A qualitative discussion about the possibilities of forming the cold (MgCs)$^+$ molecular ions by photoassociative spectroscopy is presented.