English

Electric control of a canted-antiferromagnetic Chern insulator

Mesoscale and Nanoscale Physics 2022-04-06 v1 Materials Science

Abstract

The interplay between band topology and magnetism can give rise to exotic states of matter. For example, magnetically doped topological insulators can realize a Chern insulator that exhibits quantized Hall resistance at zero magnetic field. While prior works have focused on ferromagnetic systems, little is known about band topology and its manipulation in antiferromagnets. Here, we report that MnBi2_2Te4_4 is a rare platform for realizing a canted-antiferromagnetic (cAFM) Chern insulator with electrical control. We show that the Chern insulator state with Chern number C=1C = 1 appears as soon as the AFM to canted-AFM phase transition happens. The Chern insulator state is further confirmed by observing the unusual transition of the C=1C = 1 state in the cAFM phase to the C=2C = 2 orbital quantum Hall states in the magnetic field induced ferromagnetic phase. Near the cAFM-AFM phase boundary, we show that the Chern number can be toggled on and off by applying an electric field alone. We attribute this switching effect to the electrical field tuning of the exchange gap alignment between the top and bottom surfaces. Our work paves the way for future studies on topological cAFM spintronics and facilitates the development of proof-of-concept Chern insulator devices.

Keywords

Cite

@article{arxiv.2107.04626,
  title  = {Electric control of a canted-antiferromagnetic Chern insulator},
  author = {Jiaqi Cai and Dmitry Ovchinnikov and Zaiyao Fei and Minhao He and Tiancheng Song and Zhong Lin and Chong Wang and David Cobden and Jiun-Haw Chu and Yong-Tao Cui and Cui-Zu Chang and Di Xiao and Jiaqiang Yan and Xiaodong Xu},
  journal= {arXiv preprint arXiv:2107.04626},
  year   = {2022}
}

Comments

13 pages, 4 figures, and 5 supplementary figures. Comments are welcome