English

Multi-type Dirac fermions protected by orthogonal glide symmetries in a noncentrosymmetric system

Materials Science 2020-07-08 v1 Strongly Correlated Electrons

Abstract

Compared to inversion-symmetric systems, emerging bulk Dirac point (DP) in noncentrosymmetric systems is much harder and its symmetry protection mechanism is poorly understood. In this work, we propose that orthogonal glide symmetries can protect two distinct types of bulk anisotropic DPs. One is the ordinary anisotropic DP that is doubly degenerate only along one invariant axis, which is resulted from symmetry-protected accidental band crossing. The other one is a symmetry-enforced DP fixed at a non-time-reversal-invariant point, which is doubly degenerate at three orthogonal directions. This unique topological phase is exemplified by KSnSe2_{2} in space group 108. Our work not only unveils an unique symmetry protection mechanism but also provides the first material candidate for exploring multi-type Dirac fermions in noncentrosymmetric systems.

Keywords

Cite

@article{arxiv.1912.10475,
  title  = {Multi-type Dirac fermions protected by orthogonal glide symmetries in a noncentrosymmetric system},
  author = {Yunyouyou Xia and Xiaochan Cai and Gang Li},
  journal= {arXiv preprint arXiv:1912.10475},
  year   = {2020}
}

Comments

5 pages, 3 figure