English

Strain induced topological phase transitions in monolayer honeycomb structures of group-V binary compounds

Materials Science 2015-12-11 v1

Abstract

We present first-principles calculations of electronic structures of a class of two-dimensional (2D) honeycomb structures of group-V binary compounds. Our results show these new 2D materials are stable semiconductors with direct or indirect band gaps. The band gap can be tuned by applying lattice strain. During their stretchable regime, they all exhibit metal-indirect gap semiconductor-direct gap semiconductor-topological insulator (TI) transitions with increasing strain from negative (compressive) to positive (tensile) values. The topological phase transition results from the band inversion at Γ\Gamma point due to lattice strain and is irrelevant to spin-orbit coupling (SOC).

Keywords

Cite

@article{arxiv.1507.06068,
  title  = {Strain induced topological phase transitions in monolayer honeycomb structures of group-V binary compounds},
  author = {Yaozhuang Nie and Mavlanjan Rahman and Daowei Wang and Can Wang and Guanghua Guo},
  journal= {arXiv preprint arXiv:1507.06068},
  year   = {2015}
}

Comments

16 pages, 6 figures