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Vortex dynamics for two-dimensional XY models

Beom Jun Kim, Petter Minnhagen, Peter Olsson

cond-mat.supr-conarXiv:cond-mat/9806231

Abstract

Two-dimensional XY models with resistively shunted junction (RSJ) dynamics and time dependent Ginzburg-Landau (TDGL) dynamics are simulated and it is verified that the vortex response is well described by the Minnhagen phenomenology for both types of dynamics. Evidence is presented supporting that the dynamical critical exponent z in the low-temperature phase is given by the scaling prediction (expressed in terms of the Coulomb gas temperature TCG and the vortex renormalization given by the dielectric constant ε) z=1/εTCG-2≥ 2 both for RSJ and TDGL and that the nonlinear IV exponent a is given by a=z+1 in the low-temperature phase. The results are discussed and compared with the results of other recent papers and the importance of the boundary conditions is emphasized.

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