Interface resistance in ferromagnet/superconductor junctions
arXiv:cond-mat/9907194 · doi:10.1016/S0921-4534(99)00370-6
Abstract
Results of theoretical study of spin-polarized tunneling in ferromagnet/superconductor junctions are presented. Spin and charge currents are calculated as a function of applied voltage and spin polarization in a ferromagnet. The model takes into account the splitting of different spin subbands in a ferromagnet and impurity scattering in the contact. The excess resistance of an FS contact due to the charge-imbalance in a superconductor is calculated for the first time. The results have implications for spin-coupled magnetoresistance in ferromagnet/superconductor contacts and for measuring spin polarization in ferromagnets.
6 pages, 5 figures, Proceedings of the 5th Twente Workshop on Digital Applications, Josephson Junctions and Sensors, to be published in Physica C
References in corpus (1)
Cited by in corpus (11)
- Odd Triplet Superconductivity and Related Phenomena in Superconductor-Ferromagnet Structures
- Probing Spin Polarization with Andreev Reflection: A Theoretical Basis
- Mesoscopic Ferromagnet/Superconductor Junctions and the Proximity Effect
- Tunneling conductance of graphene ferromagnet-insulator-superconductor junctions
- Andreev reflection in layered structures: implications for high T_c grain boundary Josephson junctions
- Magnetic Field Scaling of the Conductance of Epitaxial Cuprate-Manganite Bilayers
- Crossover between short and long range proximity effects in SFS junctions with Ni-based ferromagnets
- Effect of transport-induced charge inhomogeneity on point-contact Andreev reflection spectra at ferromagnet-superconductor interfaces
- Spin polarized current and Andreev transmission in planar superconducting/ferromagnetic Nb/Ni junctions
- Transport and triplet superconducting condensate in mesoscopic ferromagnet-superconductor structures
- Nonhomogeneous magnetization and superconductivity in superconductor-ferromagnet structures