arXiv · cond-mat/0105255
Vortex wandering in a forest of splayed columnar defects
Abstract
We investigate the scaling properties of single flux lines in a random pinning landscape consisting of splayed columnar defects. Such correlated defects can be injected into Type II superconductors by inducing nuclear fission or via direct heavy ion irradiation. The result is often very efficient pinning of the vortices which gives, e.g., a strongly enhanced critical current. The wandering exponent ζand the free energy exponent ωof a single flux line in such a disordered environment are obtained analytically from scaling arguments combined with extreme-value statistics. In contrast to the case of point disorder, where these exponents are universal, we find a dependence of the exponents on details in the probability distribution of the low lying energies of the columnar defects. The analytical results show excellent agreement with numerical transfer matrix calculations in two and three dimensions.
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Jack Lidmar, David R. Nelson, Denis A. Gorokhov. 2001-05-13. Vortex wandering in a forest of splayed columnar defects. https://doi.org/10.1103/physrevb.64.144512
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