Dynamical separation of bulk and edge transport in HgTe-based 2D topological insulators
Mesoscale and Nanoscale Physics
2020-02-26 v3
Abstract
Topological effects in edge states are clearly visible on short lengths only, thus largely impeding their studies. On larger distances, one may be able to dynamically enhance topological signatures by exploiting the high mobility of edge states with respect to bulk carriers. Our work on microwave spectroscopy highlights the responses of the edges which host very mobile carriers, while bulk carriers are drastically slowed down in the gap. Though the edges are denser than expected, we establish that charge relaxation occurs on short timescales, and suggests that edge states can be addressed selectively on timescales over which bulk carriers are frozen.
Keywords
Cite
@article{arxiv.1903.12391,
title = {Dynamical separation of bulk and edge transport in HgTe-based 2D topological insulators},
author = {Matthieu C. Dartiailh and Simon Hartinger and Alexandre Gourmelon and Kalle Bendias and Hugo Bartolomei and Hiroshi Kamata and Jean-Marc Berroir and Gwendal Fève and Bernard Plaçais and Lukas Lunczer and Raimund Schlereth and Hartmut Buhmann and Laurens W. Molenkamp and Erwann Bocquillon},
journal= {arXiv preprint arXiv:1903.12391},
year = {2020}
}
Comments
Main text (5 pages, 4 figures) + Supplementary Material