Kinetic Roughening of Penetrating Flux Fronts in High-Tc Thin Film Superconductors

Journal Article (1999)
Author(s)

R Surdeanu (Vrije Universiteit Amsterdam)

Rinke J. Wijngaarden (Vrije Universiteit Amsterdam)

E. Visser (Vrije Universiteit Amsterdam)

J. M. Huijbregtse (Vrije Universiteit Amsterdam)

J. H. Rector (Vrije Universiteit Amsterdam)

B Dam (Vrije Universiteit Amsterdam)

R. P. Griessen (Vrije Universiteit Amsterdam)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1103/PhysRevLett.83.2054
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Publication Year
1999
Language
English
Affiliation
External organisation
Issue number
10
Volume number
83
Pages (from-to)
2054-2057

Abstract

Kinetic roughening of flux fronts penetrating in superconducting thin films are studied by means of a high resolution magneto-optic technique. The roughening exponent (α = 0.64) and growth exponent (β = 0.65) obtained from a dynamic scaling analysis of the initial stage of flux penetration and, at small length scales, are characteristic for a static disorder dominated nonlinear diffusion such as also observed in the directed percolated depinning model. At large length scale, α = 0.46 indicates a transition towards dynamic stochastic disorder, similar to the behavior of Kardar-Parisi-Zhang systems. There is a striking similarity with the behavior of combustion fronts in burning paper.

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