English

Magnetic wallpaper Dirac fermions and topological magnetic Dirac insulators

Mesoscale and Nanoscale Physics 2023-04-27 v2

Abstract

Topological crystalline insulators (TCIs) can host anomalous surface states which inherits the characteristics of crystalline symmetry that protects the bulk topology. Especially, the diversity of magnetic crystalline symmetries indicates the potential for novel magnetic TCIs with distinct surface characteristics. Here, we propose a topological magnetic Dirac insulator (TMDI), whose two-dimensional surface hosts fourfold-degenerate Dirac fermions protected by either the pc4mmp'_c4mm or p4gmp4'g'm magnetic wallpaper group. The bulk topology of TMDIs is protected by diagonal mirror symmetries, which give chiral dispersion of surface Dirac fermions and mirror-protected hinge modes. We propose candidate materials for TMDIs including Nd4_4Te8_8Cl4_4O20_{20} and DyB4_4 based on first-principles calculations, and construct a general scheme for searching TMDIs using the space group of paramagnetic parent states. Our theoretical discovery of TMDIs will facilitate future research on magnetic TCIs and illustrate a distinct way to achieve anomalous surface states in magnetic crystals.

Keywords

Cite

@article{arxiv.2210.10740,
  title  = {Magnetic wallpaper Dirac fermions and topological magnetic Dirac insulators},
  author = {Yoonseok Hwang and Yuting Qian and Junha Kang and Jehyun Lee and Dongchoon Ryu and Hong Chul Choi and Bohm-Jung Yang},
  journal= {arXiv preprint arXiv:2210.10740},
  year   = {2023}
}

Comments

10+36 pages, 4+23 figures, published version