English

Line-Node Dirac Semimetal and Topological Insulating Phase in Noncentrosymmetric Pnictides CaAgX (X = P, As)

Mesoscale and Nanoscale Physics 2015-12-25 v3

Abstract

Two noncentrosymmetric ternary pnictides, CaAgP and CaAgAs, are reported as topological line-node semimetals protected solely by mirror-reflection symmetry. The band gap vanishes on a circle in momentum space, and surface states emerge within the circle. Extending this study to spin-orbit coupled systems reveals that, compared with CaAgP, a substantial band gap is induced in CaAgAs by large spin-orbit interaction. The resulting states are a topological insulator, in which the Z2 topological invariant is given by 1; 000. To clarify the Z2 topological invariants for time-reversal-invariant systems without spatial-inversion symmetry, we introduce an alternative way to calculate the invariants characterizing a line node and topological insulator for mirror-reflection-invariant systems.

Keywords

Cite

@article{arxiv.1510.00202,
  title  = {Line-Node Dirac Semimetal and Topological Insulating Phase in Noncentrosymmetric Pnictides CaAgX (X = P, As)},
  author = {Ai Yamakage and Youichi Yamakawa and Yukio Tanaka and Yoshihiko Okamoto},
  journal= {arXiv preprint arXiv:1510.00202},
  year   = {2015}
}

Comments

4+4 pages, 3+3 figures