Quantum criticality at the Anderson transition: a TMT perspective
Abstract
We present a complete analytical and numerical solution of the Typical Medium Theory (TMT) for the Anderson metal-insulator transition. In this theory, we self-consistently calculate the typical amplitude of the electron wave-We present a complete analytical and numerical solution of the Typical Medium Theory (TMT) for the Anderson metal-insulator transition. This approach self-consistently calculates the typical amplitude of the electronic wave-functions, thus representing the conceptually simplest order-parameter theory for the Anderson transition. We identify all possible universality classes for the critical behavior, which can be found within such a mean-field approach. This provides insights into how interaction-induced renormalizations of the disorder potential may produce qualitative modifications of the critical behavior. We also formulate a simplified description of the leading critical behavior, thus obtaining an effective Landau theory for Anderson localization.
Keywords
Cite
@article{arxiv.1411.4558,
title = {Quantum criticality at the Anderson transition: a TMT perspective},
author = {Samiyeh Mahmoudian and Shao Tang and Vladimir Dobrosavljević},
journal= {arXiv preprint arXiv:1411.4558},
year = {2016}
}
Comments
12 pages, 9 figures