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基于相对论电子结构计算的氟化镱电子光谱

Electronic spectra of ytterbium fluoride from relativistic electronic structure calculations.

作者信息

Pototschnig Johann V, Dyall Kenneth G, Visscher Lucas, Gomes André Severo Pereira

机构信息

Institut für Experimentalphysik, Technische Universität Graz, Petersgasse 16, 8010 Graz, Austria.

Department of Chemistry and Pharmaceutical Sciences, Faculty of Sciences, Vrije Universiteit Amsterdam, De Boelelaan 1083, NL-1081 HV Amsterdam, The Netherlands.

出版信息

Phys Chem Chem Phys. 2021 Oct 13;23(39):22330-22343. doi: 10.1039/d1cp03701c.

Abstract

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 = 1/2, 3/2 states, arising from the 4fσ26s, 4f5d/6p, and 4f5dσ16s 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 = 1/2, 3/2 states that can be compared to experimental observations.

摘要

我们报告了对YbF分子低激发态的研究——YbF分子是用于电子电偶极矩实验测量的候选分子——采用基于双分量的多参考组态相互作用(MRCI)、运动方程耦合簇方法(EOM - CCSD)以及外推中间哈密顿量福克空间耦合簇方法(XIHFS - CCSD)。具体而言,我们从包含填满或部分填满的Yb 4f壳层的组态角度,探讨这些低激发态的本质问题。我们表明,虽然在同一活性空间中同时包含这两种组态进行计算似乎不太可能,但可以从福克空间的不同扇区提取可靠信息——也就是说,分别对闭壳层YbF和YbF⁺物种进行电子附着和脱离的IHFS - CCSD以及EOM - CCSD计算。通过这些计算,我们预测由4fσ²6s、4f5d/6p和4f5dσ¹6s组态产生的¹/₂、³/₂态,在基态平衡几何结构附近的相同能量范围内出现时能够相互作用。由于这些态是从福克空间的不同扇区产生的,它们几乎正交,并对激发态流形的部分提供互补描述。为了获得全面的图像,我们引入一个简单的绝热模型来提取相互作用的¹/₂、³/₂态的能量,以便与实验观测结果进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b2d/8514048/0712b369766e/d1cp03701c-f1.jpg

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