English

Approach to equilibrium for a class of random quantum models of infinite range

Mathematical Physics 2015-05-13 v4 Disordered Systems and Neural Networks math.MP

Abstract

We consider random generalizations of a quantum model of infinite range introduced by Emch and Radin. The generalization allows a neat extension from the class l1l_1 of absolutely summable lattice potentials to the optimal class l2l_2 of square summable potentials first considered by Khanin and Sinai and generalised by van Enter and van Hemmen. The approach to equilibrium in the case of a Gaussian distribution is proved to be faster than for a Bernoulli distribution for both short-range and long-range lattice potentials. While exponential decay to equilibrium is excluded in the nonrandom l1l_1 case, it is proved to occur for both short and long range potentials for Gaussian distributions, and for potentials of class l2l_2 in the Bernoulli case. Open problems are discussed.

Keywords

Cite

@article{arxiv.0904.2130,
  title  = {Approach to equilibrium for a class of random quantum models of infinite range},
  author = {Walter F. Wreszinski},
  journal= {arXiv preprint arXiv:0904.2130},
  year   = {2015}
}

Comments

10 pages, no figures. This last version, to appear in J. Stat. Phys., corrects some minor errors and includes additional references and comments on the relation to experiments