Evidence for ideal insulating/conducting state in a 1D integrable system
Condensed Matter
2009-10-28 v1
Abstract
Using numerical diagonalization techniques we analyze the finite temperature/frequency conductance of a one dimensional model of interacting spinless fermions. Depending on the interaction, the observed finite temperature charge stiffness and low frequency conductance indicate a fundamental difference between integrable and non-integrable cases. The integrable systems behave as ideal conductors in the metallic regime and as ideal insulators in the insulating one. The non-integrable systems are, as expected, generic conductors in the metallic regime and activated ones in the insulating regime.
Cite
@article{arxiv.cond-mat/9508078,
title = {Evidence for ideal insulating/conducting state in a 1D integrable system},
author = {X. Zotos and P. Prelovsek},
journal= {arXiv preprint arXiv:cond-mat/9508078},
year = {2009}
}
Comments
revtex file, followed by 5 uuencoded postscript figures