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First-principles study of electronic structures of infinite-layer nickelates

ORAL

Abstract

Recently, experimentalists obtained the angle-resolved photo-emission spectroscopic (ARPES) results of superconducting La0.8Sr0.2NiO2. Here we perform first-principles calculations to compare the electronic structure of La0.8Sr0.2NiO2 to experiment by using density functional theory plus dynamical mean field theory (DFT+DMFT) calculations. We find that there is a large Ni-dx2-y2-derived Fermi sheet that evolves from hole-like to electronic-like along kz and a three-dimensional (3D) electron pocket centered at the Brillouin zone corner. The theoretical Fermi topology is in good agreement with the measured momentum-resolved electronic structure. By fitting the theoretical spectrum function to the ARPES data, the band renormalization of Ni-dx2-y2-derived band is observed with the mass enhancements factor of around 2-3, while the band renormalization of the 3D electron band is negligible.

Publication: arXiv:2403.07344

Presenters

  • Chengliang Xia

    NYU Shanghai

Authors

  • Chengliang Xia

    NYU Shanghai

  • Wenjie Sun

    Nanjing Univ

  • Zhicheng Jiang

    University of Science and Technology of China

  • Bo Hao

    Nanjing University

  • Shengjun Yan

    Nanjing University

  • Maosen Wang

    Nanjing University

  • Yueying Li

    Nanjing University, Nanjing Univ

  • Hongquan Liu

    Brown University

  • Jianyang Ding

    Chinese Academy of Sciences, Shanghai Institute of Microsystem and Information Technology

  • Jiayu Liu

    Chinese Academy of Sciences, Shanghai Institute of Microsystem and Information Technology

  • Zhengtai Liu

    Chinese Academy of Sciences, Shanghai Advanced Research Institute

  • Jishan Liu

    Chinese Academy of Sciences, Shanghai Advanced Research Institute

  • Hanghui Chen

    NYU Shanghai and New York University, New York University (NYU)

  • Dawei Shen

    University of Science and Technology of China

  • Yuefeng Nie

    Nanjing Univ