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Two-component density functional theory study of quantized muons in solids

delete2023-03-28
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邓力 cover
邓力 (Deng Li)
Y
Yue Yuan
F
F. L. Pratt
W
Wenshuai Zhang
Z
Ziwen Pan
B
Bangjiao Ye *
DOI:10.1103/PhysRevB.107.094433delete
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Abstract

Abstract

En 中文
The quantum effect of light nuclei in materials is usually considered as lattice vibration and zero-point motion from an ab initio perspective. Here we start from full-quantized particles and take the muon as an example, considering the two-body quantized system of the muon and the electrons within two-component density functional theory, which can calculate the related two-body wave functions directly and automatically taking into account the quantum effect of the muon. We first simulate the two-body correlation energy and the pair-correlation function by quantum Monte Carlo, then construct a two-body self-consistent loop to solve the two-body density and then the hyperfine couplings are estimated. This is an attempt to reveal the quantum effect of light nuclei in materials from a different perspective. We finally find this fundamental method agrees better with experiments and shows good potential for further such calculations.
Keywords:
ELECTRON-GAS
IMPURITIES
HYDROGEN
FIELD

Journal

Physical Review B cover
Physical Review B
IF:
3.7
Papers:
15.4W
Citations:
41.0W

Organization

U
university of science & technology of china, cas
Scholars:
3.2W
Papers: 2.7W
Citations: 74
U
uk research & innovation (ukri)
Scholars:
2.7W
Papers: 2.3W
Citations: 32
C
chinese academy of sciences
Scholars:
55.3W
Papers: 44.6W
Citations: 704
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