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Accurate Electron-phonon Interactions from Advanced Density Functional Theory

ORAL

Abstract

Electron-phonon coupling (EPC) is key for understanding superconductivity, resistivity and other properties of materials. Although first-principles-based EPC calculations using density functional theory (DFT) are used widely, their accuracy and efficiency is limited by the employed exchange-correlation approximations. This problem is exacerbated in complex d-electron materials, which are typically thought to require beyond-DFT methods or empirical corrections such as the Hubbard U. Here, we show that the r2SCAN meta-GGA density functional can correctly capture strong EPC effects in transition-metal oxides such as CoO and NiO, without requiring the introduction of empirical parameters. We can thus expect r2SCAN to also achieve high accuracy in modeling phonon-mediated superconducting properties of the main group compounds (e.g., MgB2). Our study showcases the ability of r2SCAN to extend the scope of accurate EPC calculations to encompass complex d-electron materials.

Presenters

  • Ruiqi Zhang

    Tulane University

Authors

  • Ruiqi Zhang

    Tulane University

  • Yanyong Wang

    Tulane University

  • Manuel Engel

    VASP Software GmbH

  • Christopher A Lane

    Los Alamos National Lab, Los Alamos National Laboratory, Los Alamos National Laboratory (LANL)

  • Henrique P Miranda

    VASP Software GmbH

  • LIN HOU

    Los Alamos National Laboratory (LANL)

  • Bernardo Barbiellini

    LUT University

  • Robert S Markiewicz

    Northeastern University

  • Jian-Xin Zhu

    Los Alamos National Laboratory (LANL), Los Alamos National Laboratory

  • Georg Kresse

    University of Vienna

  • Arun Bansil

    Northeastern University

  • Jianwei Sun

    Tulane University