English

Weyl Semimetals with $S_4$ symmetry

Materials Science 2020-05-06 v2

Abstract

In the time-reversal-breaking centrosymmetric systems, the appearance of Weyl points can be guaranteed by an odd number of all the even/odd parity occupied bands at eight inversion-symmetry-invariant momenta. Here, based on symmetry analysis and first-principles calculations, we demonstrate that for the time-reversal-invariant systems with S4S_4 symmetry, the Weyl semimetal phase can be characterized by the inequality between a well-defined invariant η\eta and an S4S_4 indicator z2z_2. By applying this criterion, we find that some candidates, previously predicted to be topological insulators, are actually Weyl semimetals in the noncentrosymmetric space group with S4S_4 symmetry. Our first-principles calculations show that four pairs of Weyl points are located in the kx,yk_{x,y} = 0 planes, with each plane containing four same-chirality Weyl points. An effective model has been built and captures the nontrivial topology in these materials. Our strategy to find the Weyl points by using symmetry indicators and invariants opens a new route to search for Weyl semimetals in the time-reversal-invariant systems.

Keywords

Cite

@article{arxiv.1912.03961,
  title  = {Weyl Semimetals with $S_4$ symmetry},
  author = {Yuting Qian and Jiacheng Gao and Zhida Song and Simin Nie and Zhijun Wang and Hongming Weng and Zhong Fang},
  journal= {arXiv preprint arXiv:1912.03961},
  year   = {2020}
}

Comments

11 pages,8 figures