A Metal-Insulator transition induced by Random Dipoles
Quantum Gases
2013-09-20 v2
Abstract
We study the localization properties of a test dipole feeling the disordered potential induced by dipolar impurities trapped at random positions in an optical lattice. This random potential is marked by correlations which are a convolution of short-range and long-range ones. We show that when short-range correlations are dominant, extended states can appear in the spectrum. Introducing long-range correlations, the extended states, if any, are wiped out and localization is restored over the whole spectrum. Moreover, long-range correlations can either increase or decrease the localization length at the center of the band, which indicates a richer behavior than previously predicted.
Cite
@article{arxiv.1303.5605,
title = {A Metal-Insulator transition induced by Random Dipoles},
author = {M. Larcher and C. Menotti and B. Tanatar and P. Vignolo},
journal= {arXiv preprint arXiv:1303.5605},
year = {2013}
}
Comments
9 pages, 5 figures