Charge and spin transport through a ferromagnet/insulator/unconventional superconductor junction
arXiv:1101.4782 · doi:10.1103/PhysRevB.83.094507
Abstract
We analyze the charge and spin transport through a ballistic ferromagnet/insulator/superconductor junction by means of the Bogoliubov-de Gennes equations. For the ferromagnetic side we assume that ferromagnetism may be driven by an unequal mass renormalization of oppositely polarized carriers, i.e. a spin bandwidth asymmetry, and/or by a rigid splitting of up-and down-spin electron bands, as in a standard Stoner ferromagnet, whereas the superconducting side is assumed to exhibit a d-wave symmetry of the order parameter, which can be pure or accompanied by a minority component breaking time-reversal symmetry. Several remarkable features in the charge conductance arise in this kind of junction, providing useful information about the mechanism of ferromagnetism in the ferromagnetic electrode, as well as of the order parameter symmetry in the superconducting one. In particular, we show that when a time-reversal symmetry breaking superconductor is considered, the use of the two kinds of ferromagnet mentioned above represents a valuable tool to discriminate between the different superconducting mixed states. We also explain how this junction may mimic a switch able to turn on and off a spin current, leaving the charge conductance unchanged, and we show that for a wide range of insulating barrier strengths, a spin bandwidth asymmetry ferromagnet may support a spin current larger than a standard Stoner one.
10 pages, 6 figures
References in corpus (6)
- The BCS-like gap in superconductor SmFeAsO_0.85F_0.15
- Theory of Andreev reflection in junctions with iron-based High- superconductors
- Tunneling conductance in Superconductor/Ferromagnet junctions: a self consistent approach
- Proximity effect in ferromagnet-superconductor hybrid structures: role of the pairing symmetry
- Tunneling conductance and local density of states in time-reversal symmetry breaking superconductors under the influence of an external magnetic field
- Does a ferromagnet with spin-dependent masses produce a spin-filtering effect in a ferromagnetic/insulator/superconductor junction?
Cited by in corpus (10)
- Andreev reflection at the altermagnet-superconductor interface
- Electrical and Thermal Transport in Antiferromagnet-Superconductor Junctions
- Josephson effect in S/F/S junctions: spin bandwidth asymmetry vs. Stoner exchange
- Topological superconductivity and Majorana fermions in hybrid structures involving cuprate high-T_c superconductors
- Fermi-liquid Landau parameters for a nondegenerate band: Spin and charge instabilities in the extended Hubbard model
- Band-mixing-mediated Andreev reflection of semiconductor holes
- Conductance spectroscopy of a correlated superconductor in a magnetic field in the Pauli limit: Evidence for strong correlations
- Ferromagnetic features on zero-bias conductance peaks in ferromagnet/insulator/superconductor junction
- Spin and charge transport in ferromagnet-superconductor-ferromagnet heterostructures: Stoner versus spin mass mismatch mechanism
- Phase separation and proximity effects in itinerant ferromagnet-superconductor heterostructures