Theory of superconductor-ferromagnet point contact spectra: the case of strong spin polarization
arXiv:0912.0105 · doi:10.1103/PhysRevB.81.094508
Abstract
We study the impact of spin-active scattering on Andreev spectra of point contacts between superconductors(SCs) and strongly spin-polarized ferromagnets(FMs) using recently derived boundary conditions for the Quasiclassical Theory of Superconductivity. We describe the interface region by a microscopic model for the interface scattering matrix. Our model includes both spin-filtering and spin-mixing and is non-perturbative in both transmission and spin polarization. We emphasize the importance of spin-mixing caused by interface scattering, which has been shown to be crucial for the creation of exotic pairing correlations in such structures. We provide estimates for the possible magnitude of this effect in different scenarios and discuss its dependence on various physical parameters. Our main finding is that the shape of the interface potential has a tremendous impact on the magnitude of the spin-mixing effect. Thus, all previous calculations, being based on delta-function or box-shaped interface potentials, underestimate this effect gravely. As a consequence, we find that with realistic interface potentials the spin-mixing effect can easily be large enough to cause spin-polarized sub-gap Andreev bound states in SC/sFM point contacts. In addition, we show that our theory generalizes earlier models based on the Blonder-Tinkham-Klapwijk approach.
Minor mistakes/typos corrected
References in corpus (24)
- A spin triplet supercurrent through the half-metallic ferromagnet CrO2
- Theory of the proximity effect in junctions with unconventional superconductors
- Symmetries of Pairing Correlations in Superconductor-Ferromagnet Nanostructures
- Spin-dependent Cooper Pair Phase and Pure Spin Supercurrents in Strongly Polarized Ferromagnets
- Odd Triplet Pairing in clean Superconductor/Ferromagnet heterostructures
- Pairing symmetry conversion by spin-active interfaces in superconducting junctions
- The scattering problem in non-equilibrium quasiclassical theory of metals and superconductors: general boundary conditions and applications
- Induced Triplet Pairing in clean s-wave Superconductor/Ferromagnet layered structures
- Josephson coupling through ferromagnetic heterojunctions with noncollinear magnetizations
- Quantum limit of the triplet proximity effect in half-metal - superconductor junctions
- Interplay of ferromagnetism and triplet superconductivity in a Josephson junction
- 0- transition in magnetic triplet superconductor Josephson junctions
- 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
- Theory of Nonequilibrium Spin Transport and Spin Transfer Torque in Superconducting-Ferromagnetic Nanostructures
- Josephson current and Andreev states in superconductor-half metal-superconductor heterostructures
- Phase Diagrams of Ferromagnet-Superconductor Multilayers with Misaligned Exchange Fields
- Josephson current in ballistic heterostructures with spin-active interfaces
- Conductance and current noise of a superconductor/ferromagnet quantum point contact
- Dynamics of spin transport in voltage-biased Josephson junctions
- Tunneling conductance in Superconductor/Ferromagnet junctions: a self consistent approach
- Finite frequency noise of a superconductor/ferromagnet quantum point contact
- Josephson effect in thin-film superconductor/insulator/superconductor junctions with misaligned in-plane magnetic fields
- Influence of spin filtering and spin mixing on the subgap structure of I-V characteristics in superconducting quantum point contact
Cited by in corpus (26)
- Spin-polarized supercurrents for spintronics: a review of current progress
- Nonlocal Thermoelectric Effects and Nonlocal Onsager Relations in a Three-Terminal Proximity-Coupled Superconductor-Ferromagnet Device
- General Boundary Conditions for Quasiclassical Theory of Superconductivity in the Diffusive Limit: Application to Strongly Spin-polarized Systems
- Signature of odd-frequency pairing correlations induced by a magnetic interface
- Triplet proximity effect in superconducting heterostructures with a half-metallic layer
- Triplet Cooper pairs induced in diffusive s-wave superconductors interfaced with strongly spin-polarized magnetic insulators or half-metallic ferromagnets
- Observation of Andreev bound states at spin-active interfaces
- Inverse proximity effect and influence of disorder on triplet supercurrents in strongly spin-polarized ferromagnets
- Spin polarization of (Ga,Mn)As measured by Andreev Spectroscopy: The role of spin-active scattering
- Tunneling Conductance and Spin Transport in Clean Ferromagnet-Ferromagnet-Superconductor Heterostructures
- Theory of Andreev Bound States in S-F-S Junctions and S-F Proximity Devices
- Andreev spectroscopy of CrO thin films on TiO and AlO
- Nonlocal conductance via overlapping Andreev bound states in ferromagnet-superconductor heterostructures
- Entanglement witnessing in superconducting beamsplitters
- Charge transfer statistics of transport through Majorana bound states
- Kondo effect and spin-active scattering in ferromagnet-superconductor junctions
- Quantum-geometric spin and charge Josephson diode effects
- Band-mixing-mediated Andreev reflection of semiconductor holes
- Spin current injection via equal-spin Cooper pairs in ferromagnet/superconductor heterostructures
- Theory of quantum-geometric charge and spin Josephson diode effects in strongly spin-polarized hybrid structures with noncoplanar spin textures
- Andreev bound states in superconductor/ferromagnet point contact Andreev reflection spectra
- P-wave Cooper pair splitting
- Spin-resolved Josephson diode effect through strongly spin-polarized conical magnets
- First-principles calculations of spin-triplet andreev reflection spectra at half-metallic ferromagnet/superconductor interface
- Comment on "Unified Formalism of Andreev Reflection at a Ferromagnet/Superconductor Interface" by T.Y. Chen, et al
- Excess current in ferromagnet-superconductor structures with fully polarized triplet component