Velocity-force characteristics of a driven interface in a disordered medium
Abstract
Using a dynamic functional renormalization group treatment of driven elastic interfaces in a disordered medium, we investigate several aspects of the creep-type motion induced by external forces below the depinning threshold : i) We show that in the experimentally important regime of forces slightly below the velocity obeys an Arrhenius-type law with an effective energy barrier vanishing linearly when f approaches the threshold . ii) Thermal fluctuations soften the pinning landscape at high temperatures. Determining the corresponding velocity-force characteristics at low driving forces for internal dimensions d=1,2 (strings and interfaces) we find a particular non-Arrhenius type creep involving the reduced threshold force alone. For d=3 we obtain a similar v-f characteristic which is, however, non-universal and depends explicitly on the microscopic cutoff.
Keywords
Cite
@article{arxiv.cond-mat/0012315,
title = {Velocity-force characteristics of a driven interface in a disordered medium},
author = {M. Mueller and D. Gorokhov and G. Blatter},
journal= {arXiv preprint arXiv:cond-mat/0012315},
year = {2009}
}
Comments
9 pages, RevTeX, 3 postscript figures