Topological Magnetic Insulators with Corundum Structure
Abstract
Topological insulators are new states of quantum matter in which surface states residing in the bulk insulating gap are protected by time-reversal symmetry. When a proper kind of antiferromagnetic long range order is established in a topological insulator, the system supports axionic excitations. In this paper, we study theoretically the electronic states in a transition metal oxide of corundum structure, in which both spin-orbit interaction and electron-electron interaction play crucial roles. A tight-binding model analysis predicts that materials with this structure can be strong topological insulator. Because of the electron correlation, an antiferromagnetic order may develop, giving rise to a topological magnetic insulator phase with axionic excitations.
Cite
@article{arxiv.1008.2666,
title = {Topological Magnetic Insulators with Corundum Structure},
author = {Jing Wang and Rundong Li and Shou-Cheng Zhang and Xiao-Liang Qi},
journal= {arXiv preprint arXiv:1008.2666},
year = {2015}
}
Comments
4.6 pages, 4 figures