Weak localization of disordered quasiparticles in the mixed superconducting state
Superconductivity
2009-10-31 v3
Abstract
Starting from a random matrix model, we construct the low-energy effective field theory for the noninteracting gas of quasiparticles of a disordered superconductor in the mixed state. The theory is a nonlinear sigma model, with the order parameter field being a supermatrix whose form is determined solely on symmetry grounds. The weak localization correction to the field-axis thermal conductivity is computed for a dilute array of s-wave vortices near the lower critical field H_c1. We propose that weak localization effects, cut off at low temperatures by the Zeeman splitting, are responsible for the field dependence of the thermal conductivity seen in recent high-T_c experiments by Aubin et al.
Cite
@article{arxiv.cond-mat/9808297,
title = {Weak localization of disordered quasiparticles in the mixed superconducting state},
author = {R. Bundschuh and C. Cassanello and D. Serban and M. R. Zirnbauer},
journal= {arXiv preprint arXiv:cond-mat/9808297},
year = {2009}
}
Comments
RevTex, 8 pages, 1 eps figure, typos corrected