English

Topological phase transition induced by random substitution

Materials Science 2012-07-17 v1

Abstract

The transition from topologically nontrivial to a trivial state is studied by first-principles calculations on bulk zinc-blende type (Hg1x_{1-x}Znx_x)(Te1x_{1-x}Sx_x) disordered alloy series. The random chemical disorder was treated by means of the Coherent Potential Approximation. We found that although the phase transition occurs at the strongest disorder regime (x0.5{x\approx 0.5}), it is still manifested by well-defined Bloch states forming a clear Dirac cone at the Fermi energy of the bulk disordered material. The computed residual resistivity tensor confirm the topologically-nontrivial state of the HgTe-rich (x<0.5{x<0.5}), and the trivial state of the ZnS-rich alloy series (x>0.5{x>0.5}) by exhibiting the quantized behavior of the off-diagonal spin-projected component, independently on the concentration xx.

Keywords

Cite

@article{arxiv.1207.3463,
  title  = {Topological phase transition induced by random substitution},
  author = {Stanislav Chadov and Janos Kiss and Claudia Felser and Kristina Chadova and Diemo Ködderitzsch and Jan Minár and Hubert Ebert},
  journal= {arXiv preprint arXiv:1207.3463},
  year   = {2012}
}
R2 v1 2026-06-21T21:35:43.587Z