paper

Vortex Plastic Motion in Twinned Superconductors

arXiv:cond-mat/9607182 · doi:10.1103/PhysRevLett.77.3625

Abstract

We present simulations, without electrodynamical assumptions, of , and , in hard superconductors, for a variety of twin-boundary pinning potential parameters, and for a range of values of the density and strength of the pinning sites. We numerically solve the overdamped equations of motion of up to 10^4 flux-gradient-driven vortices which can be temporarily trapped at pinning centers. These simulations relate macroscopic measurements (e.g., M(H), ``flame'' shaped profiles) with the underlying microscopic pinning landscape and the plastic dynamics of individual vortices.