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Critical flux pinning and enhanced upper-critical-field in magnesium diboride films

M. N. Kunchur, C. Wu, D. H. Arcos, B. I. Ivlev, Eun-Mi Choi, Kijoon H. P. Kim, W. N. Kang, Sung-Ik Lee

cond-mat.supr-conarXiv:cond-mat/0311364

Abstract

We have conducted pulsed transport measurements on c-axis oriented magnesium diboride films over the entire relevant ranges of magnetic field 0 H Hc2 (where is the upper critical field) and current density 0 j jd (where jd is the depairing current density). The intrinsic disorder of the films combined with the large coherence length and three-dimensionality, compared to cuprate superconductors, results in a six-fold enhancement of Hc2 and raises the depinning current density jc to within an order of magnitude of jd. The current-voltage response is highly non-linear at all fields, resulting from a combination of depinning and pair-breaking, and has no trace of an Ohmic free-flux-flow regime. Keywords: pair, breaking, depairing, superconductor, superconductivity, flux, fluxon, vortex, mgb2

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