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Coexistence of Magnetic Orders in Two-Dimensional Magnet CrI<sub>3</sub>

ORAL

Abstract

The magnetic properties in two-dimensional van der Waals materials depend sensitively on structure. CrI3, as an example, has been recently demonstrated to exhibit distinct magnetic properties depending on the layer thickness and stacking order. Bulk CrI3 is ferromagnetic (FM) with a Curie temperature of 61 K and a rhombohedral layer stacking, while few-layer CrI3 has a layered antiferromagnetic (AFM) phase with a lower ordering temperature of 45 K and a monoclinic stacking. In this work, we use cryogenic magnetic force microscopy to investigate CrI3 flakes in the intermediate thickness range (25 – 200 nm) and find that the two types of magnetic orders can coexist in the same flake, with a layer of ~13 nm at each surface being in the layered AFM phase similar to few-layer CrI3 and the rest in the bulk FM phase. The switching of the bulk moment proceeds through a remnant state with nearly compensated magnetic moment along the c-axis, indicating formation of c-axis domains allowed by a weak interlayer coupling strength in the rhombohedral phase.

Presenters

  • Ben Niu

    University of California, Riverside

Authors

  • Ben Niu

    University of California, Riverside

  • Tang Su

    University of California, Riverside

  • Brian A Francisco

    University of California, Riverside

  • Subhajit Ghosh

    University of California, Riverside

  • Fariborz Kargar

    University of California, Riverside

  • Xiong Huang

    University of California, Riverside, University of California, Reverside

  • Mark I Lohmann

    University of California, Riverside

  • Junxue Li

    University of California, Riverside, Department of Physics and Astronomy, University of California, Riverside

  • Yadong Xu

    University of California, Riverside

  • di wu

    Department of Materials Science and Engineering, Nanjing University, Nanjing University

  • Alexander Balandin

    University of California, Riverside

  • Jing Shi

    University of California, Riverside, Physics and Astronomy, University of California, Riverside, Department of Physics and Astronomy, University of California, Riverside

  • Yongtao Cui

    University of California, Riverside, University of California, Reverside