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UOTe: Kondo-interacting topological antiferromagnet in a van der Waals lattice

ORAL

Abstract

Since the initial discovery of two-dimensional van der Waals (vdW) materials, significant effort has been made to incorporate the three properties of magnetism, band structure topology, and strong electron correlations — to leverage emergent quantum phenomena and expand their potential applications. However, the discovery of a single vdW material that intrinsically hosts all three ingredients has remained an outstanding challenge. Here we report the discovery of a Kondo-interacting topological antiferromagnet in the vdW 5f electron system UOTe. It has a high antiferromagnetic (AFM) transition temperature of 150 K, with a unique AFM configuration that breaks the combined parity and time reversal (PT) symmetry in an even number of layers while maintaining zero net magnetic moment. Our angle-resolved photoemission spectroscopy (ARPES) measurements reveal Dirac bands near the Fermi level, which combined with our theoretical calculations demonstrate UOTe as an AFM Dirac semimetal. Within the AFM order, we observed the presence of the Kondo interaction, as evidenced by the emergence of a 5f flat band near the Fermi level below 100 K and hybridization between the Kondo band and the Dirac band. Our density functional theory calculations in its bilayer form predict UOTe as a rare example of a fully-compensated AFM Chern insulator.

Presenters

  • Christopher Broyles

    Washington University, St. Louis

Authors

  • Christopher Broyles

    Washington University, St. Louis

  • Sougata Mardanya

    Howard University

  • Mengke Liu

    Harvard University

  • Junyeong Ann

    Harvard University

  • Thao H Dinh

    Harvard University

  • Gadeer Alqasseri

    Howard University, Howard university

  • Jalen Garner

    Howard University

  • Zackary R Rehfuss

    Washington University, St. Louis

  • Ken Guo

    Washington University, St. Louis

  • Jiahui Zhu

    Washington University, St. Louis

  • David Martinez

    Washington University, St. Louis, Washington University at St. Louis

  • Du Li

    Washington University, St. Louis

  • Yiqing Hao

    Oak Ridge National Laboratory

  • Huibo Cao

    Oak Ridge National Laboratory

  • Weiwei Xie

    Michigan State University

  • Tai Kong

    University of Arizona

  • Li Yang

    Washington University, St. Louis

  • Ashvin Vishwanath

    Harvard University

  • Philip Kim

    Harvard University

  • Su-Yang Xu

    Harvard University

  • Jennifer E Hoffman

    Harvard University

  • Jonathan D Denlinger

    Lawrence Berkeley National Laboratory, Advanced Light Source, Lawrence Berkeley National Laboratory

  • Sugata Chowdhury

    Howard University

  • Sheng Ran

    Washington University, St. Louis