English

Hybrid single-pair charge-2 Weyl semimetals

Materials Science 2023-01-20 v2

Abstract

Intuitively, the dispersion characteristics of Weyl nodes with opposite charges in single-pair charge-2 Weyl semimetals are the same, quadratic or linear. We theoretically predicted that single-pair hybrid charge-2 Weyl semimetals (the nodes with opposite charges show quadratic Weyl and linear charge-2 Dirac characteristics, respectively) can be protected by specific nonsymmorphic symmetries in spinless systems. Moreover, the symmetries force the pair of Weyl points locate at the center and corners of the first Brillouin zone (FBZ), respectively. Consequently, nontrivial surface states run through the entire FBZ of the system fascinating for future experimental detection and device applications. The hybrid phase is further verified with the help of first-principles calculations for the phonon states in realistic material of Na2_2Zn2_2O3_3. The new phase will not only broaden the understanding of the Weyl semimetals, but also provide an interesting platform to investigate the interaction between the two types of Weyl fermions with different dispersions.

Keywords

Cite

@article{arxiv.2301.06887,
  title  = {Hybrid single-pair charge-2 Weyl semimetals},
  author = {P. Zhou and Y. Z. Hu and B. R. Pan and F. F. Huang and W. Q. Li and Z. S. Ma and L. Z. Sun},
  journal= {arXiv preprint arXiv:2301.06887},
  year   = {2023}
}

Comments

19 pages, 5 figures

R2 v1 2026-06-28T08:13:26.951Z