Probing the magnetoelectric effect in noncentrosymmetric superconductors by equal-spin Andreev tunneling
arXiv:1804.01891 · doi:10.1088/1361-648X/aaf337
Abstract
In noncentrosymmetric superconductors (NCSs), the conversion of a charge current into spin magnetization - the so called magnetoelectric effect - is the direct indicator of the unconventional, mixed-parity order parameter. This paper proposes a scheme to detect the magnetoelectric effect by anomalous, equal-spin Andreev tunneling in NCS/ferromagnet contacts. The proposal relies on the ability to generate spin-polarized triplet pairing by passing an electric current through an NCS. Such an induced triplet pairing bears a similarity to the paradigmatic nonunitary pairing in triplet superfluids with a complex vector order parameter . The qualitative difference is that the induced nonunitary state can be realised in NCSs with a purely real by breaking the time-reversal symmetry in current-biased setups. This offers a possibility to access the unconventional superconductivity in NCSs through electrical transport measurements.
preprint format, accepted version
References in corpus (22)
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Proximity effect at the superconductor - topological insulator interface
- Engineering a p+ip Superconductor: Comparison of Topological Insulator and Rashba Spin-Orbit Coupled Materials
- Topological surface states in nodal superconductors
- Non-sinusoidal current-phase relationship in Josephson junctions from the 3D topological insulator HgTe
- Magnetoelectrics in Disordered Topological Insulator Josephson Junctions
- Induced superconductivity in the three-dimensional topological insulator HgTe
- Novel Josephson Effect in Triplet Superconductor - Ferromagnet - Triplet Superconductor Junctions
- Tunable Anomalous Andreev Reflection and Triplet Pairings in Spin Orbit Coupled Graphene
- Spontaneous supercurrent and 0 phase shift parallel to magnetized topological insulator interfaces
- Spontaneous Edge Accumulation of Spin Currents in Finite-Size Two-Dimensional Diffusive Spin-Orbit Coupled SFS Heterostructures
- Nonuniform states in noncentrosymmetric superconductors
- Half-Metallic Superconducting Triplet Spin MultiValves
- Theory of Nonequilibrium Spin Transport and Spin Transfer Torque in Superconducting-Ferromagnetic Nanostructures
- Josephson Spin Current in Triplet Superconductor Junctions
- Usadel equation in the presence of intrinsic spin-orbit coupling: A unified theory of magneto-electric effects in normal and superconducting systems
- Spin-Hall effects in a Josephson contact
- Magnetoelectric Andreev effect due to proximity-induced non-unitary triplet superconductivity in helical metals
- Tunneling Conductance and Spin Transport in Clean Ferromagnet-Ferromagnet-Superconductor Heterostructures
- Electrically controllable spin filtering based on superconducting helical states
- Giant spin splitting and Josephson transitions from the Edelstein effect in quantum spin-Hall insulators
- Triplet superconductivity and proximity effect induced by Bloch and Néel domain walls
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- Transport in two-dimensional topological materials: recent developments in experiment and theory
- Spin-orbit effects in pentavalent Iridates: Models and materials
- Chiral current-phase relation of topological Josephson junctions: A signature of the -periodic Josephson effect
- Nonequilibrium Green's function approach to multi-band Cooper-pair transport: linear magnetoresistance effect due to nonunitary superconductivity