As correlation strength has a key influence on the simulation of strongly correlated materials, many approaches have been proposed to obtain the parameter using first-principles calculations. However, a comparison of the different Coulomb strengths obtained using these approaches and an investigation of the mechanisms behind them are still needed. Taking lanthanide metals as an example, we research the factors that affect the effective Coulomb interaction strength, Ueff, by local screened Coulomb correction (LSCC), linear response (LR), and constrained random-phase approximation (cRPA) in the Vienna Ab initio Simulation Package. The value increases from 4.75 to 7.78 eV, is almost stable at about 6.0 eV (except for Eu, Er, and Yb), and shows a two-stage decreasing trend in both light and heavy lanthanides. To investigate these differences, we establish a scheme to analyze the coexistence and competition between the orbital localization and the screening effect. We find that LSCC and cRPA are dominated by the orbital localization and the screening effect, respectively, whereas LR shows the balance of the competition between the two factors. Additionally, the performance of these approaches is influenced by different starting points from the Perdew–Burke–Ernzerhof (PBE) and PBE + U, especially for cRPA. Our results provide useful knowledge for understanding the Ueff of lanthanide materials, and similar analyses can also be used in the research of other correlation strength simulation approaches.
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28 February 2023
Research Article|
February 24 2023
Comparative study of first-principles approaches for effective Coulomb interaction strength Ueff between localized f-electrons: Lanthanide metals as an example
Bei-Lei Liu
;
Bei-Lei Liu
a)
(Investigation, Writing – original draft, Writing – review & editing)
1
School of Mathematical Sciences, Beijing Normal University
, Beijing 100875, China
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Yue-Chao Wang
;
Yue-Chao Wang
a)
(Conceptualization, Investigation, Supervision, Writing – original draft, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Yu Liu
;
Yu Liu
a)
(Conceptualization, Supervision, Writing – original draft, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Yuan-Ji Xu
;
Yuan-Ji Xu
(Validation, Writing – original draft, Writing – review & editing)
3
Institute for Applied Physics, University of Science and Technology Beijing
, Beijing 100083, China
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Xin Chen
;
Xin Chen
(Validation, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Hong-Zhou Song
;
Hong-Zhou Song
(Validation, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Yan Bi
;
Yan Bi
(Validation, Writing – review & editing)
4
Center for High Pressure Science and Technology Advanced Research
, Beijing 100094, China
5
National Key Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics, CAEP
, Mianyang 621900, China
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Hai-Feng Liu
;
Hai-Feng Liu
(Validation, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Hai-Feng Song
Hai-Feng Song
(Validation, Writing – review & editing)
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
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Bei-Lei Liu
1,2,a)
Yue-Chao Wang
2,a)
Yu Liu
2,a)
Yuan-Ji Xu
3
Xin Chen
2
Hong-Zhou Song
2
Yan Bi
4,5
Hai-Feng Liu
2
Hai-Feng Song
2
1
School of Mathematical Sciences, Beijing Normal University
, Beijing 100875, China
2
Laboratory of Computational Physics, Institute of Applied Physics and Computational Mathematics
, Beijing 100088, China
3
Institute for Applied Physics, University of Science and Technology Beijing
, Beijing 100083, China
4
Center for High Pressure Science and Technology Advanced Research
, Beijing 100094, China
5
National Key Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics, CAEP
, Mianyang 621900, China
J. Chem. Phys. 158, 084108 (2023)
Article history
Received:
December 01 2022
Accepted:
February 07 2023
Citation
Bei-Lei Liu, Yue-Chao Wang, Yu Liu, Yuan-Ji Xu, Xin Chen, Hong-Zhou Song, Yan Bi, Hai-Feng Liu, Hai-Feng Song; Comparative study of first-principles approaches for effective Coulomb interaction strength Ueff between localized f-electrons: Lanthanide metals as an example. J. Chem. Phys. 28 February 2023; 158 (8): 084108. https://doi.org/10.1063/5.0137264
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