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First-Principles Calculation of Hubbard U for Terbium Metal under High Pressure

Strongly Correlated Electrons 2024-07-25 v1 Materials Science

Abstract

Using density functional theory (DFT) and linear response approaches, we compute the on-site Hubbard interaction UU of elemental Terbium (Tb) metal in the pressure range 065\sim 0-65 GPa. The resulting first-principles UU values with experimental crystal structures enable us to examine the magnetic properties of Tb using a self-consistent DFT+U method. The lowest-energy magnetic states in our calculations for different high-pressure Tb phases -- including hcp, α\alpha-Sm, and dhcp -- are found to be compatible with the corresponding magnetic ordering vectors reported in experiments. The result shows that the inclusion of Hubbard UU substantially improves the accuracy and efficiency in modeling correlated rare-earth materials. Our study also provides the necessary UU information for other quantum many-body techniques to study Tb under extreme pressure conditions.

Keywords

Cite

@article{arxiv.2403.11457,
  title  = {First-Principles Calculation of Hubbard U for Terbium Metal under High Pressure},
  author = {Logan A. Burnett and Matthew P. Clay and Yogesh K. Vohra and Cheng-Chien Chen},
  journal= {arXiv preprint arXiv:2403.11457},
  year   = {2024}
}

Comments

7 pages, 4 figures