English

Vortex dynamics in type II superconductors under strong pinning conditions

Superconductivity 2017-11-08 v1 Statistical Mechanics

Abstract

We study effects of pinning on the dynamics of a vortex lattice in a type II superconductor in the strong-pinning situation and determine the force--velocity (or current--voltage) characteristic combining analytical and numerical methods. Our analysis deals with a small density npn_p of defects that act with a large force fpf_p on the vortices, thereby inducing bistable configurations that are a characteristic feature of strong pinning theory. We determine the velocity-dependent average pinning-force density Fp(v)\langle F_p(v)\rangle and find that it changes on the velocity scale vpfp/ηa03v_p \sim f_p/\eta a_0^3, where η\eta is the viscosity of vortex motion and a0a_0 the distance between vortices. In the small pin-density limit, this velocity is much larger than the typical flow velocity vcFc/ηv_c \sim F_c/\eta of the free vortex system at drives near the critical force-density Fc=Fp(v=0)npfpF_c = \langle F_p(v=0)\rangle \propto n_p f_p. As a result, we find a generic excess-force characteristic, a nearly linear force--velocity characteristic shifted by the critical force-density FcF_c; the linear flux-flow regime is approached only at large drives. Our analysis provides a derivation of Coulomb's law of dry friction for the case of strong vortex pinning.

Keywords

Cite

@article{arxiv.1709.03369,
  title  = {Vortex dynamics in type II superconductors under strong pinning conditions},
  author = {A. U. Thomann and V. B. Geshkenbein and G. Blatter},
  journal= {arXiv preprint arXiv:1709.03369},
  year   = {2017}
}

Comments

24 pages, 12 figures

R2 v1 2026-06-22T21:39:00.056Z