Edge states in non-Fermi liquids
Abstract
We devise an approach to the calculation of scaling dimensions of generic operators describing scattering within multi-channel Luttinger liquid. The local impurity scattering in an arbitrary configuration of conducting and insulating channels is investigated and the problem is reduced to a single algebraic matrix equation. In particular, the solution to this equation is found for a finite array of chains described by Luttinger liquid models. It is found that for a weak inter-chain hybridisation and intra-channel electron-electron attraction the edge wires are robust against disorder whereas bulk wires, on contrary, become insulating. Thus, the edge state may exist in a finite sliding Luttinger liquid without time-reversal symmetry breaking (quantum Hall systems) or spin-orbit interaction (topological insulators).
Cite
@article{arxiv.1702.06406,
title = {Edge states in non-Fermi liquids},
author = {Igor V. Yurkevich},
journal= {arXiv preprint arXiv:1702.06406},
year = {2017}
}
Comments
10 pages, 1 figure