English

Tunable double-Weyl Fermion semimetal state in the SrSi$_2$ materials class

Mesoscale and Nanoscale Physics 2018-07-17 v1

Abstract

We discuss first-principles topological electronic structure of noncentrosymmetric SrSi2_2 materials class based on the hybrid exchange-correlation functional. Topological phase diagram of SrSi2_2 is mapped out as a function of the lattice constant with focus on the semimetal order. A tunable double-Weyl Fermion state in Sr1x_{1-x}Cax_{x}Si2_2 and Sr1x_{1-x}Bax_{x}Si2_2 alloys is identified. Ca doping in SrSi2_2 is shown to yield a double-Weyl semimetal with a large Fermi arc length, while Ba doping leads to a transition from the topological semimetal to a gapped insulator state. Our study indicates that SrSi2_2 materials family could provide an interesting platform for accessing the unique topological properties of Weyl semimetals.

Keywords

Cite

@article{arxiv.1807.05585,
  title  = {Tunable double-Weyl Fermion semimetal state in the SrSi$_2$ materials class},
  author = {Bahadur Singh and Guoqing Chang and Tay-Rong Chang and Shin-Ming Huang and Chenliang Su and Ming-Chieh Lin and Hsin Lin and Arun Bansil},
  journal= {arXiv preprint arXiv:1807.05585},
  year   = {2018}
}

Comments

21 pages (Text file including 5 figures), Accepted in Nature Scientific Reports