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Correlation Effects on Coupled Electronic and Structural Properties of Doped Rare-Earth Trihydrides

ORAL

Abstract

Rare-earth trihydrides exhibit intriguing coupled electronic and structural properties as a function of doping, hydrogen vacancies, and thermodynamic conditions. Theoretical studies of these materials typically rely on density functional theory (DFT), including the use of small supercells that may underestimate strong correlation effects and structural distortions which in turn may influence their metallicity. Previous work has shown hybridization-induced flat bands near the Fermi energy by particular anion arrangements. Here, we elucidate the roles of lattice distortions and correlation effects on the electronic properties of pristine and doped $R$H$_3$ by adopting DFT+U and Quantum Monte Carlo (QMC) methods. Large Hubbard parameters for hydrogen and nitrogen orbitals are computed, indicating strong correlation effects.

Publication: Denchfield, Adam, et al. "Correlation Effects on Coupled Electronic and Structural Properties of Doped Rare-Earth Trihydrides." arXiv preprint arXiv:2410.03142 (2024).

Presenters

  • Adam R Denchfield

    University of Illinois at Chicago

Authors

  • Adam R Denchfield

    University of Illinois at Chicago

  • Russell J Hemley

    University of Illinois at Chicago, University of Illinois Chicago, Departments of Physics, Chemistry, and Earth and Environmental Sciences, University of Illinois Chicago, Chicago, IL 60607, USA, Departments of Physics, Chemistry, and Earth and Environmental Sciences, University of Illinois Chicago

  • Panchapakesan Ganesh

    Oak Ridge National Laboratory

  • Hyeondeok Shin

    Argonne National Laboratory

  • Hyowon Park

    University of Illinois at Chicago