APS Logo

Phase transition from Mn-Bi<sub>2</sub>Te<sub>3</sub> to MnBi<sub>2</sub>Te<sub>4</sub>

ORAL

Abstract

The realization of MnBi2Te4 film opens the vision to search rich topological effects in intrinsic magnetic topological insulator. In the cleaved single crystal samples, the high resolution angle-resolved photoemission spectroscopy (ARPES) shows the clear topological electronic structures, and the transverse resistance reaches quantization in a high external magnetic field . Those results indicate that 124 family materials can be an ideal platform for further exploring various topological phenomena. But in Mn-Bi-Te system, 124 structure is not the solely stable phase. Mn atoms can replace the position of Bi atoms to form a Mn doped Bi2Te3 phase. MnBi4Te7 and Mn2Bi2Te5 are also predicted to be existed in this system. In order to give a clear phase diagram and give an instruction of growing Mn-Bi-Te material, we investigate the evolution of electronic energy band structures with increasing Mn doping level. We also study the temperature influence on the Mn-Bi-Te material.

Presenters

  • Kejing Zhu

    Tsinghua University

Authors

  • Kejing Zhu

    Tsinghua University

  • Menghan Liao

    Tsinghua University

  • Yan Gong

    Tsinghua University

  • Ke He

    Tsinghua University

  • Qikun Xue

    Department of Physics, Tsinghua University, Physics, Tsinghua University, Tsinghua University