We study localized in-gap states and quantum spin Hall effect in Si-doped InAs/GaSb quantum wells. We propose a model describing donor and/or acceptor impurities to describe Si dopants. This model shows in-gap bound states and wide conductance plateau with the quantized value 2e2/h in light dopant concentration, consistent with recent experiments by Du et al. We predict a conductance dip structure due to backward scattering in the region where the localization length ξ is comparable with the sample width Ly but much smaller than the sample length Lx.
@article{arxiv.1310.4051,
title = {Localized States and Quantum Spin Hall Effect in Si-Doped InAs/GaSb Quantum Wells},
author = {Dong-Hui Xu and Jin-Hua Gao and Chao-Xing Liu and Jin-Hua Sun and Fu-Chun Zhang and Yi Zhou},
journal= {arXiv preprint arXiv:1310.4051},
year = {2014}
}
Comments
4+pages main text including 4 figures, supplementary materials with 3 figures are included