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Magnetotransport and Shubnikov–de Haas oscillations of a type-II nodal-line semimetal candidate Mg<sub>3</sub>Bi<sub>2</sub>

ORAL

Abstract

Mg3Bi2 is a candidate type-II nodal-line semimetal (a novel category of topological semimetals). However, exotic transport properties of Mg3Bi2 single crystal are yet to be elucidated. Herein, we report the magnetotransport properties of an n-type Mg3Bi2 single crystal that was grown from a melt. The results revealed that the single crystal exhibited a very large nonsaturating magnetoresistance (5000%) under an 8 T field, significantly exceeding those of polycrystals. We explored its Shubnikov–de Haas oscillations, which revealed a small effective mass as well as a nontrivial phase shift, suggesting Dirac-fermion features in Mg3Bi2. We confirmed that the electron mobility reached 10000 cm2/Vs by analyzing the Hall resistivity and magnetoresistance based on a two-carrier model. Overall, these results are critical to elucidating the electronic structure and transport properties of Mg3Bi2.

Presenters

  • Yosuke Goto

    AIST

Authors

  • Yosuke Goto

    AIST

  • Masayuki Murata

    AIST

  • Keigo Ono

    Keio University / AIST, Keio University

  • Hidetomo Usui

    Shimane University

  • Joseph P P Heremans

    Ohio State University, The Ohio State University

  • Taichi Terashima

    National Institute for Materials Science

  • Chul-Ho Lee

    AIST