中国物理B ›› 2021, Vol. 30 ›› Issue (7): 73104-073104.doi: 10.1088/1674-1056/ac003f
Shu-Tao Zhao(赵书涛)1,2, Xin-Peng Liu(刘鑫鹏)3, Rui Li(李瑞)3,†, Hui-Jie Guo(国慧杰)3, and Bing Yan(闫冰)2,‡
Shu-Tao Zhao(赵书涛)1,2, Xin-Peng Liu(刘鑫鹏)3, Rui Li(李瑞)3,†, Hui-Jie Guo(国慧杰)3, and Bing Yan(闫冰)2,‡
摘要: The multi-reference configuration interaction method plus Davidson correction (MRCI$+$Q) are adopted to study the low-lying states of SH with consideration of scalar relativistic effect, core-valence (CV) electron correlation, and spin-orbit coupling (SOC) effect. The SOC effect on the low-lying states is considered by utilizing the full Breit-Pauli operator. The potential energy curves (PECs) of 10 $\Lambda$-S states and 18 $\Omega$ states are calculated. The dipole moments of 10 $\Lambda$-S states are calculated, and the variation along the internuclear distance is explained by the electronic configurations. With the help of calculated SO matrix elements, the possible predissociation channels of A$^{2}\Sigma^{+}$, c$^{4}\Sigma^{-}$ and F$^{2}\Sigma^{-}$ are discussed. The Franck-Condon factors of A$^{2}\Sigma^{+}$-X$^{2}\Pi $, F$^{2}\Sigma^{-}$-X$^{2}\Pi $ and E$^{2}\Sigma^{+}$-X$^{2}\Pi$ transitions are determined, and the radiative lifetimes of A$^{2}\Sigma^{+}$ and F$^{2}\Sigma^{-}$ states are evaluated, which are in good agreement with previous experimental results.
中图分类号: (Potential energy surfaces for excited electronic states)