Equilibration in a chiral Luttinger liquid
Abstract
We explore the weak-strong-coupling Bose-Fermi duality in a model of a single-channel integer or fractional quantum Hall edge state with a finite-range interaction. The system is described by a chiral Luttinger liquid with non-linear dispersion of bosonic and fermonic excitations. We use the bosonization, a unitary transformation, and a refermionization to map the system onto that of weakly interacting fermions at low temperature or weakly interacting bosons at high . We calculate the equilibration rate which is found to scale with temperature as and in the high-temperature ("bosonic") and the low-temperature ("fermonic") regimes, respectively. The relaxation rate of a hot particle with the momentum in the fermonic regime scales as .
Cite
@article{arxiv.1412.7942,
title = {Equilibration in a chiral Luttinger liquid},
author = {I. V. Protopopov and D. B. Gutman and A. D. Mirlin},
journal= {arXiv preprint arXiv:1412.7942},
year = {2015}
}
Comments
9 pages, 2 figures