Limits of the upper critical field in dirty two-gap superconductors
arXiv:cond-mat/0701281 · doi:10.1016/j.physc.2007.01.008
Abstract
An overview of the theory of the upper critical field in dirty two-gap superconductors, with a particular emphasis on MgB is given. We focus here on the maximum which may be achieved by increasing intraband scattering, and on the limitations imposed by weak interband scattering and paramagnetic effects. In particular, we discuss recent experiments which have recently demonstrated ten-fold increase of in dirty carbon-doped films as compared to single crystals, so that the parallel to the ab planes may approach the BCS paramagnetic limit, . New effects produced by weak interband scattering in the two-gap Ginzburg-Landau equations and in ultrathin MgB films are addressed.
Submitted to the special issue of Physica C on MgB on Dec. 3, 2006
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- Prospects for Improving the Intrinsic and Extrinsic Properties of Magnesium Diboride Superconducting Strands
- High-Field Pauli-Limiting Behavior and Strongly Enhanced Upper Critical Magnetic Fields near the Transition Temperature of an Arsenic-Deficient LaO_0.9F_0.1FeAs_(1-δ) Superconductor
- Coherent current states in a two-band superconductor
- Systematic characterization of upper critical fields for MgB thin films using the two-band superconducting theory