English

Persistence of Anderson localization in Schr\"odinger operators with decaying random potentials

Mathematical Physics 2013-02-26 v1 math.MP

Abstract

We show persistence of both Anderson and dynamical localization in Schr\"odinger operators with non-positive (attractive) random decaying potential. We consider an Anderson-type Schr\"odinger operator with a non-positive ergodic random potential, and multiply the random potential by a decaying envelope function. If the envelope function decays slower than x2|x|^{-2} at infinity, we prove that the operator has infinitely many eigenvalues below zero. For envelopes decaying as xα|x|^{-\alpha} at infinity, we determine the number of bound states below a given energy E<0E<0, asymptotically as α0\alpha\downarrow 0. To show that bound states located at the bottom of the spectrum are related to the phenomenon of Anderson localization in the corresponding ergodic model, we prove: (a) these states are exponentially localized with a localization length that is uniform in the decay exponent α\alpha; (b)~ dynamical localization holds uniformly in α\alpha.

Keywords

Cite

@article{arxiv.math-ph/0604020,
  title  = {Persistence of Anderson localization in Schr\"odinger operators with decaying random potentials},
  author = {Alexander Figotin and François Germinet and Abel Klein and Peter Müller},
  journal= {arXiv preprint arXiv:math-ph/0604020},
  year   = {2013}
}