Sliding Luttinger liquid phases
Abstract
We study systems of coupled spin-gapped and gapless Luttinger liquids. First, we establish the existence of a sliding Luttinger liquid phase for a system of weakly coupled parallel quantum wires, with and without disorder. It is shown that the coupling can {\it stabilize} a Luttinger liquid phase in the presence of disorder. We then extend our analysis to a system of crossed Luttinger liquids and establish the stability of a non-Fermi liquid state: the crossed sliding Luttinger liquid phase (CSLL). In this phase the system exhibits a finite-temperature, long-wavelength, isotropic electric conductivity that diverges as a power law in temperature as . This two-dimensional system has many properties of a true isotropic Luttinger liquid, though at zero temperature it becomes anisotropic. An extension of this model to a three-dimensional stack exhibits a much higher in-plane conductivity than the conductivity in a perpendicular direction.
Cite
@article{arxiv.cond-mat/0102163,
title = {Sliding Luttinger liquid phases},
author = {Ranjan Mukhopadhyay and C. L. Kane and T. C. Lubensky},
journal= {arXiv preprint arXiv:cond-mat/0102163},
year = {2009}
}
Comments
Revtex, 18 pages, 8 figures