Gou Dezhi, Kuang Xiaoyu, Gao Yufeng, Huo Dongming
Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China.
J Chem Phys. 2015 Jan 21;142(3):034308. doi: 10.1063/1.4906049.
In this paper, we systematically investigate the electronic structure for the (2)Σ(+) ground state of the polar alkali-metal-alkaline-earth-metal molecules BaAlk (Alk = Li, Na, K, Rb, and Cs). Potential energy curves and permanent dipole moments (PDMs) are determined using power quantum chemistry complete active space self-consistent field and multi-reference configuration interaction methods. Basic spectroscopic constants are derived from ro-vibrational bound state calculation. From the calculations, it is shown that BaK, BaRb, and BaCs molecules have moderate values of PDM at the equilibrium bond distance (BaK:1.62 D, BaRb:3.32 D, and BaCs:4.02 D). Besides, the equilibrium bond length (4.93 Å and 5.19 Å) and dissociation energy (0.1825 eV and 0.1817 eV) for the BaRb and BaCs are also obtained.
在本文中,我们系统地研究了极性碱金属 - 碱土金属分子BaAlk(Alk = Li、Na、K、Rb和Cs)的(2)Σ(+)基态的电子结构。使用多组态量子化学完全活性空间自洽场和多参考组态相互作用方法确定了势能曲线和永久偶极矩(PDM)。通过转动 - 振动束缚态计算得出了基本光谱常数。计算结果表明,BaK、BaRb和BaCs分子在平衡键长处具有适中的PDM值(BaK:1.62 D,BaRb:3.32 D,BaCs:4.02 D)。此外,还得到了BaRb和BaCs的平衡键长(4.93 Å和5.19 Å)以及离解能(0.1825 eV和0.1817 eV)。