English

Site Mixing for Engineering Magnetic Topological Insulators

Materials Science 2021-05-19 v2 Quantum Physics

Abstract

The van der Waals compound, MnBi2_2Te4_4, is the first intrinsic magnetic topological insulator, providing a materials platform for exploring exotic quantum phenomena such as the axion insulator state and the quantum anomalous Hall effect. However, intrinsic structural imperfections lead to bulk conductivity, and the roles of magnetic defects are still unknown. With higher concentrations of same types of magnetic defects, the isostructural compound MnSb2_2Te4_4 is a better model system for a systematic investigation of the connections among magnetic, topology and lattice defects. In this work, the impact of antisite defects on the magnetism and electronic structure is studied in MnSb2_2Te4_4. Mn-Sb site mixing leads to complex magnetic structures and tunes the interlayer magnetic coupling between antiferromagnetic and ferromagnetic. The detailed nonstoichiometry and site-mixing of MnSb2_2Te4_4 crystals depend on the growth parameters, which can lead to \approx40\% of Mn sites occupied by Sb and \approx15\% of Sb sites by Mn in as-grown crystals. Single crystal neutron diffraction and electron microscopy studies show nearly random distribution of the antisite defects. Band structure calculations suggest that the Mn-Sb site-mixing favors a FM interlayer coupling, consistent with experimental observation, but is detrimental to the band inversion required for a nontrivial topology. Our results suggest a long range magnetic order of Mn ions sitting on Bi sites in MnBi2_2Te4_4. The effects of site mixing should be considered in all layered heterostructures that consist of alternating magnetic and topological layers, including the entire family of MnTe(Bi2_2Te3_3)n_n, its Sb analogs and their solid solution.

Keywords

Cite

@article{arxiv.2007.12217,
  title  = {Site Mixing for Engineering Magnetic Topological Insulators},
  author = {Yaohua Liu and Lin-Lin Wang and Qiang Zheng and Zengle Huang and Xiaoping Wang and Miaofang Chi and Yan Wu and Bryan C. Chakoumakos and Michael A. McGuire and Brian C. Sales and Weida Wu and Jiaqiang Yan},
  journal= {arXiv preprint arXiv:2007.12217},
  year   = {2021}
}

Comments

The effects of Mn/Sb antisite mixing on the magnetic structure (experiment) and band topology (theory) in the van der Waals magnet MnSb$_2$Te$_4$. PRX in press

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