English

Delicate Ferromagnetism in MnBi$_6$Te$_{10}$

Materials Science 2022-11-14 v2

Abstract

Tailoring magnetic orders in topological insulators is critical to the realization of topological quantum phenomena. An outstanding challenge is to find a material where atomic defects lead to tunable magnetic orders while maintaining a nontrivial topology. Here, by combining magnetization measurements, angle-resolved photoemission spectroscopy, and transmission electron microscopy, we reveal disorder-enabled, tunable magnetic ground states in MnBi6_6Te10_{10}. In the ferromagnetic phase, an energy gap of 15 meV is resolved at the Dirac point on the MnBi2_2Te4_4 termination. In contrast, antiferromagnetic MnBi6_6Te10_{10} exhibits gapless topological surface states on all terminations. Transmission electron microscopy and magnetization measurements reveal substantial Mn vacancies and Mn migration in ferromagnetic MnBi6_6Te10_{10}. We provide a conceptual framework where a cooperative interplay of these defects drives a delicate change of overall magnetic ground state energies, and leads to tunable magnetic topological orders. Our work provides a clear pathway for nanoscale defect-engineering towards the realization of topological quantum phases.

Keywords

Cite

@article{arxiv.2107.08137,
  title  = {Delicate Ferromagnetism in MnBi$_6$Te$_{10}$},
  author = {Chenhui Yan and Yanglin Zhu and Leixin Miao and Sebastian Fernandez-Mulligan and Emanuel Green and Ruobing Mei and Hengxin Tan and Binghai Yan and Chao-Xing Liu and Nasim Alem and Zhiqiang Mao and Shuolong Yang},
  journal= {arXiv preprint arXiv:2107.08137},
  year   = {2022}
}

Comments

22 pages, 3 figures

R2 v1 2026-06-24T04:16:43.412Z