Topological phase transition induced by random substitution
Abstract
The transition from topologically nontrivial to a trivial state is studied by first-principles calculations on bulk zinc-blende type (HgZn)(TeS) 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 (), 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 (), and the trivial state of the ZnS-rich alloy series () by exhibiting the quantized behavior of the off-diagonal spin-projected component, independently on the concentration .
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}
}