English

Decay of Metastable States: Sharp Transition from Quantum to Classical Behavior

Statistical Mechanics 2009-10-30 v1 Superconductivity High Energy Physics - Theory

Abstract

The decay rate of metastable states is determined at high temperatures by thermal activation, whereas at temperatures close to zero quantum tunneling is relevant. At some temperature TcT_{c} the transition from classical to quantum-dominated decay occurs. The transition can be first-order like, with a discontinuous first derivative of the Euclidean action, or smooth with only a second derivative developing a jump. In the former case the crossover temperature TcT_{c} cannot be calculated perturbatively and must be found as the intersection point of the Euclidean actions calculated at low and high temperatures. In this paper we present a sufficient criterion for a first-order transition in tunneling problems and apply it to the problem of the tunneling of strings. It is shown that the problem of the depinning of a massive string from a linear defect in the presence of an arbitrarily strong dissipation exhibits a first-order transition.

Keywords

Cite

@article{arxiv.cond-mat/9708057,
  title  = {Decay of Metastable States: Sharp Transition from Quantum to Classical Behavior},
  author = {D. A. Gorokhov and G. Blatter},
  journal= {arXiv preprint arXiv:cond-mat/9708057},
  year   = {2009}
}

Comments

14 pages, revtex, 9 figures inserted

R2 v1 2026-07-22T11:59:04.488Z