Electronic Spectra Of Ytterbium Fluoride From Relativistic Electronic Structure Calculations

PHYSICAL CHEMISTRY CHEMICAL PHYSICS(2021)

引用 7|浏览6
暂无评分
摘要
We report an investigation of the low-lying excited states of the YbF molecule-a candidate molecule for experimental measurements of the electron electric dipole moment-with 2-component based multi-reference configuration interaction (MRCI), equation of motion coupled cluster (EOM-CCSD) and the extrapolated intermediate Hamiltonian Fock-space coupled cluster (XIHFS-CCSD). Specifically, we address the question of the nature of these low-lying states in terms of configurations containing filled or partially-filled Yb 4f shells. We show that while it does not appear possible to carry out calculations with both kinds of configurations contained in the same active space, reliable information can be extracted from different sectors of Fock space-that is, by performing electron attachment and detachment IHFS-CCSD and EOM-CCSD calculation on the closed-shell YbF+ and YbF- species, respectively. From these calculations we predict omega = 1/2, 3/2 states, arising from the 4f(13)sigma 26s, 4f(14)5d(1)/6p(1), and 4f(13)5d(1)sigma 16s configurations to be able to interact as they appear in the same energy range around the ground-state equilibrium geometry. As these states are generated from different sectors of Fock space, they are almost orthogonal and provide complementary descriptions of parts of the excited state manifold. To obtain a comprehensive picture, we introduce a simple adiabatization model to extract energies of interacting omega = 1/2, 3/2 states that can be compared to experimental observations.
更多
查看译文
关键词
ytterbium fluoride,electronic spectra
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要