Robust axion insulator and Chern insulator phases in a two-dimensional antiferromagnetic topological insulator

被引:0
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作者
Chang Liu
Yongchao Wang
Hao Li
Yang Wu
Yaoxin Li
Jiaheng Li
Ke He
Yong Xu
Jinsong Zhang
Yayu Wang
机构
[1] Tsinghua University,State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics
[2] Tsinghua University,Beijing Innovation Center for Future Chips
[3] Tsinghua University,School of Materials Science and Engineering
[4] Tsinghua University,Tsinghua
[5] Tsinghua University,Foxconn Nanotechnology Research Center, Department of Physics
[6] Frontier Science Center for Quantum Information,Department of Mechanical Engineering
[7] RIKEN Center for Emergent Matter Science,undefined
来源
Nature Materials | 2020年 / 19卷
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摘要
The intricate interplay between non-trivial topology and magnetism in two-dimensional materials can lead to the emergence of interesting phenomena such as the quantum anomalous Hall effect. Here we investigate the quantum transport of both bulk crystal and exfoliated MnBi2Te4 flakes in a field-effect transistor geometry. For the six septuple-layer device tuned into the insulating regime, we observe a large longitudinal resistance and zero Hall plateau, which are characteristics of an axion insulator state. The robust axion insulator state occurs in zero magnetic field, over a wide magnetic-field range and at relatively high temperatures. Moreover, a moderate magnetic field drives a quantum phase transition from the axion insulator phase to a Chern insulator phase with zero longitudinal resistance and quantized Hall resistance h/e2, where h is Planck’s constant and e is electron charge. Our results pave the way for using even-number septuple-layer MnBi2Te4 to realize the quantized topological magnetoelectric effect and axion electrodynamics in condensed matter systems.
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页码:522 / 527
页数:5
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