Minigap in a long disordered SNS junction: analytical results
arXiv:cond-mat/0204088 · doi:10.1103/PhysRevB.66.052507
Abstract
We review and refine analytical results on the density of states in a long disordered superconductor - normal-metal - superconductor junction with transparent interfaces. Our analysis includes the behavior of the minigap near phase differences zero and PI across the junction, as well as the density of states at energies much larger than the minigap but much smaller than the superconducting gap.
4 pages
References in corpus (1)
Cited by in corpus (16)
- Density of states and supercurrent in diffusive SNS junctions: role of nonideal interfaces and spin-flip scattering
- Dissipation and supercurrent fluctuations in a diffusive NS ring
- Full range of proximity effect probed with Superconductor/Graphene/Superconductor junctions
- Phase dependent Andreev spectrum in a difusive SNS junction. Static and dynamic current response
- Proximity effect in normal-metal quasiparticle traps
- Coherence-enhanced, phase-dependent dissipation in long SNS Josephson junctions: revealing Andreev Bound States dynamics
- Nonadiabatic Dynamics of Strongly Driven Diffusive Josephson Junctions
- Minigap in a SN junction with paramagnetic impurities
- Admittance of a long diffusive SNS junction
- Phase-dependent dissipation and supercurrent of a graphene-superconductor ring under microwave irradiation
- Energy gap of ferromagnet-superconductor bilayers
- Magnetic interference patterns in long disordered Josephson junctions
- Superconducting proximity effect in quantum wires without time-reversal symmetry
- Tail States below the Thouless Gap in SNS junctions: Classical Fluctuations
- Conductance of d-wave superconductor/normal metal/d-wave superconductor junctions
- Minigap suppression in S(N/F)S junctions