Long-range proximity effect for opposite-spin pairs in S/F heterostructures under non-equilibrium quasiparticle distribution
arXiv:1202.0165 · doi:10.1103/PhysRevLett.108.197002
Abstract
By now it is known that in a singlet superconductor/ferromagnet (S/F) structure the superconducting correlations carried by opposite-spin pairs penetrate into the ferromagnet over a short distance of the order of magnetic coherence length. The long-range proximity effect (LRPE), taking place on the length scale of the normal metal coherence length, can only be maintained by equal-spin pairs, which can be generated by magnetic inhomogeneities in the system. In this work we have predicted a new type of LRPE, which can take place in S/F heterostructures under non-equilibrium conditions. The superconducting correlations in the F region are generated by opposite-spin Cooper pairs and equal-spin pairs are not involved. The possibility for an opposite-spin pair to penetrate into the ferromagnet over a large distance is provided by creation of the proper non-equilibrium quasiparticle distribution there. This leads to a sharp increase (up to a few orders of magnitude) of the critical Josephson current through a S/F/S junction at some values of the voltage controlling the nonequilibrium distribution in the F interlayer.
5 pages, 1 figure
References in corpus (5)
- A spin triplet supercurrent through the half-metallic ferromagnet CrO2
- Josephson effect due to the long-range odd-frequency triplet superconductivity in SFS junctions with Neel domain walls
- Odd triplet superconductivity in a superconductor/ferromagnet structure with a spiral magnetic structure
- Odd triplet superconductivity in superconductor-ferromagnet structures with a narrow domain wall
- 0-pi Transitions in a Superconductor/Chiral Ferromagnet/Superconductor Junction induced by a Homogeneous Cycloidal Spiral
Cited by in corpus (17)
- Spin-polarized supercurrents for spintronics: a review of current progress
- Magnetoelectrics in Disordered Topological Insulator Josephson Junctions
- Half-Metallic Superconducting Triplet Spin Valve
- Tunable Anomalous Andreev Reflection and Triplet Pairings in Spin Orbit Coupled Graphene
- Proximity Induced Vortices and Long-Range Triplet Supercurrents in Ferromagnetic Josephson Junctions and Spin Valves
- Spin Controlled Coexistence of 0 and π States in SFSFS Josephson Junctions
- Pure Odd Frequency Superconductivity at the Cores of Proximity Vortices
- Voltage-induced thin-film superconductivity in high magnetic fields
- Phase-dependent Spin Polarization of Cooper Pairs in Magnetic Josephson Junctions
- Triplet supercurrent in ferromagnetic Josephson junctions by spin injection
- Controlling spin supercurrents via nonequilibrium spin injection
- Bistable state in superconductor/ferromagnet heterostructures
- Controllable supercurrent in mesoscopic superconductor-normal metal-ferromagnet crosslike Josephson structures
- Domain wall induced modulation of low field H-T phase diagram in patterned superconductor-ferromagnet stripes
- Supercurrent-induced long-range triplet correlations and controllable Josephson effect in superconductor/ferromagnet hybrids with extrinsic SOC
- Signatures of Long-Range Spin-Triplet Component in Andreev Interferometer
- Long-Range triplet Josephson Current driven by the bias voltage