English

Order Parameter Description of the Anderson-Mott Transition

Condensed Matter 2009-10-22 v1

Abstract

An order parameter description of the Anderson-Mott transition (AMT) is given. We first derive an order parameter field theory for the AMT, and then present a mean-field solution. It is shown that the mean-field critical exponents are exact above the upper critical dimension. Renormalization group methods are then used to show that a random-field like term is generated under renormalization. This leads to similarities between the AMT and random-field magnets, and to an upper critical dimension dc+=6d_{c}^{+}=6 for the AMT. For d<6d<6, an ϵ=6d\epsilon = 6-d expansion is used to calculate the critical exponents. To first order in ϵ\epsilon they are found to coincide with the exponents for the random-field Ising model. We then discuss a general scaling theory for the AMT. Some well established scaling relations, such as Wegner's scaling law, are found to be modified due to random-field effects. New experiments are proposed to test for random-field aspects of the AMT.

Keywords

Cite

@article{arxiv.cond-mat/9412074,
  title  = {Order Parameter Description of the Anderson-Mott Transition},
  author = {D. Belitz and T. R. Kirkpatrick},
  journal= {arXiv preprint arXiv:cond-mat/9412074},
  year   = {2009}
}

Comments

28pp., REVTeX, no figures