Phase diagram for Anderson disorder: Beyond single-parameter scaling

Nigel Goldenfeld and Roger Haydock
Phys. Rev. B 73, 045118 – Published 20 January 2006

Abstract

The Anderson model for independent electrons in a disordered potential is transformed analytically and exactly to a basis of random extended states leading to a variant of augmented space. In addition to the widely accepted phase diagrams in all physical dimensions, a plethora of additional, weaker Anderson transitions are found, characterized by the long-distance behavior of states. Critical disorders are found for Anderson transitions at which the asymptotically dominant sector of augmented space changes for all states at the same disorder. At fixed disorder, critical energies are also found at which the localization properties of states are singular. Under the approximation of single-parameter scaling, this phase diagram reduces to the widely accepted one in one, two, and three dimensions. In two dimensions, in addition to the Anderson transition at infinitesimal disorder, there is a transition between two localized states, characterized by a change in the nature of wave function decay.

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  • Received 18 September 2005

DOI:https://doi.org/10.1103/PhysRevB.73.045118

©2006 American Physical Society

Authors & Affiliations

Nigel Goldenfeld

  • Department of Physics, University of Illinois at Urbana-Champaign, 1110 West Green Street, Urbana, Illinois 61801, USA and Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, United Kingdom

Roger Haydock

  • Department of Physics and Materials Science Institute, 1274 University of Oregon, Eugene, Oregon 97403-1274, USA

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Vol. 73, Iss. 4 — 15 January 2006

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