Localization Bounds for an Electron Gas
Condensed Matter
2009-10-28 v3 Mathematical Physics
Functional Analysis
math.MP
Abstract
Mathematical analysis of the Anderson localization has been facilitated by the use of suitable fractional moments of the Green function. Related methods permit now a readily accessible derivation of a number of physical manifestations of localization, in regimes of strong disorder, extreme energies, or weak disorder away from the unperturbed spectrum. The present work establishes on this basis exponential decay for the modulus of the two--point function, at all temperatures as well as in the ground state, for a Fermi gas within the one-particle approximation. Different implications, in particular for the Integral Quantum Hall Effect, are reviewed.
Cite
@article{arxiv.cond-mat/9603116,
title = {Localization Bounds for an Electron Gas},
author = {M. Aizenman and G. M. Graf},
journal= {arXiv preprint arXiv:cond-mat/9603116},
year = {2009}
}
Comments
An extended version of the previous draft. LaTeX, 1 figure (eps)