Tuning magnetic properties of a Weyl semimetal with low current density

ORAL

Abstract

Recently, Co3Sn2S2 was proved to be a magnetic Weyl semimetal, which may serve as an ideal platform to realize chiral magnetic effects and quantum anomalous Hall effect. In a perfect quantum anomalous Hall state, theoretical works have predicted that Co3Sn2S2 has a larger domain-wall moving velocity and a smaller field threshold to drive domain-wall motion than conventional metals. This feature is highly attractive for energy-efficient and high-performance spintronic devices, such as magnetic domain-wall racetrack memories. Here we report experimental results of current modulation of the magnetic properties of Co3Sn2S2, and observed a lower current density threshold than conventional metals.

Presenters

  • Qiuyuan Wang

    • Peking Univ

Authors

  • Qiuyuan Wang

    • Peking Univ
  • Yi Zeng

    • Peking Univ
  • Kai Yuan

    • Peking Univ
  • XIng Cheng

    • Peking Univ
    • School of Physics, Peking University
  • Yu Ye

    • Peking Univ
    • State Key Laboratory for Mesoscopic Physics, Frontiers Science Center for Nano-optoelectronics, Collaborative Innovation Center of Quantum Matter, School of Physics, Peking U
    • School of Physics, Peking University