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Vortex dynamics and states of artificially layered superconducting films with correlated defects

Andreas Engel, H. J. Trodahl

cond-mat.supr-conarXiv:cond-mat/0204342

Abstract

Linear resistances and IV-characteristics have been measured over a wide range in the parameter space of the mixed phase of multilayered a-TaGe/Ge films. Three films with varying interlayer coupling and correlated defects oriented at an angle ≈ 25 from the film normal were investigated. Experimental data were analyzed within vortex glass models and a second order phase transition from a resistive vortex liquid to a pinned glass phase. Various vortex phases including changes from three to two dimensional behavior depending on anisotropy have been identified. Careful analysis of IV-characteristics in the glass phases revealed a distinctive T and H-dependence of the glass exponent μ. The vortex dynamics in the Bose-glass phase does not follow the predicted behavior for excitations of vortex kinks or loops.

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