Tail States in Disordered Superconductors with Magnetic Impurities: the Unitarity Limit
arXiv:cond-mat/0111195 · doi:10.1088/0305-4470/35/19/302
Abstract
When subject to a weak magnetic impurity distribution, the order parameter and quasi-particle energy gap of a weakly disordered bulk s-wave superconductor are suppressed. In the Born scattering limit, recent investigations have shown that `optimal fluctuations' of the random impurity potential can lead to the nucleation of `domains' of localised states within the gap region predicted by the conventional Abrikosov-Gor'kov mean-field theory, rendering the superconducting system gapless at any finite impurity concentration. By implementing a field theoretic scheme tailored to the weakly disordered system, the aim of the present paper is to extend this analysis to the consideration of magnetic impurities in the unitarity scattering limit. This investigation reveals that the qualitative behaviour is maintained while the density of states exhibits a rich structure.
18 pages AMSLaTeX (with LaTeX2e), 6 eps figures
References in corpus (1)
Cited by in corpus (9)
- Microscopic interpretation of the Dynes formula for the tunneling density of states
- Surface impedance of superconductors with weak magnetic impurities
- Thermodynamic properties of the Dynes superconductors
- Electromagnetic properties of impure superconductors with pair-breaking processes
- Subgap states in disordered superconductors
- Quantum transport theory for unconventional magnets: Interplay of altermagnetism and p-wave magnetism with superconductivity
- Subgap states in disordered superconductors with strong magnetic impurities
- Quantum corrections to conductivity of disordered electrons due to inelastic scattering off magnetic impurities
- Magnetic disorder in superconductors: Enhancement by mesoscopic fluctuations