Interfacial spin-orbit coupling in superconducting hybrid systems
arXiv:2502.10911 · doi:10.1103/dsxt-phyk
Abstract
We investigate the effects of interfacial spin-orbit coupling (ISOC) on superconductors, focusing on its impact on electronic transport and spin-charge conversion. Using a symmetry-based nonlinear sigma model, we derive effective boundary conditions for the Usadel and Maxwell equations that account for the spin-galvanic effect, spin relaxation, and spin precession. This approach allows for the analysis of various interfaces without relying on specific microscopic models. We apply these boundary conditions to derive ISOC-induced terms in the Ginzburg-Landau functional, which is then used to compute the critical temperature of superconducting films with ISOC subjected to an external magnetic field. Our findings show that, contrary to a recent prediction, the critical temperature of a film cannot be enhanced by an external magnetic field. Additionally, we demonstrate that the combination of ISOC and an external magnetic field leads to a superconducting diode effect. Its efficiency strongly depends on the interplay between the spin-galvanic and the spin relaxation terms. Our results provide a framework for understanding ISOC in superconducting systems and highlight the potential for optimizing diode efficiency through careful interface engineering.
21 pages, 3 figures
References in corpus (34)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Proximity effects in superconductor-ferromagnet heterostructures
- Direct electronic measurement of the spin Hall effect
- Highly efficient and tuneable spin-to-charge conversion through Rashba coupling at oxide interfaces
- Realization of the field-free Josephson Diode
- Fermi level dependent charge-to-spin current conversion by Dirac surface state of topological insulators
- Direct coupling between magnetism and superconducting current in Josephson Phi junction
- Spin-pumping into surface states of topological insulator α-Sn, spin to charge conversion at room temperature
- A phenomenological theory of superconductor diodes
- Theory of the supercurrent diode effect in Rashba superconductors with arbitrary disorder
- Spin-orbit coupling as a source of long-range triplet proximity effect in superconductor-ferromagnet hybrid structures
- Chirality from interfacial spin-orbit coupling effects in magnetic bilayers
- Theory of the spin-galvanic effect and the anomalous phase-shift in superconductors and Josephson junctions with intrinsic spin-orbit coupling
- General Boundary Conditions for Quasiclassical Theory of Superconductivity in the Diffusive Limit: Application to Strongly Spin-polarized Systems
- Manifestation of triplet superconductivity in superconductor-ferromagnet structures
- Spin-dependent boundary conditions for isotropic superconducting Green's functions
- Magnetoelectric Effects in Gyrotropic Superconductors
- Interfacial spin-orbit torques
- Sign reversal of the AC and DC supercurrent diode effect and 0--like transitions in ballistic Josephson junctions
- Nonuniform states in noncentrosymmetric superconductors
- Ballistic spin transport in the presence of interfaces with strong spin-orbit coupling
- Magnetoelectric effects in Josephson junctions
- Upper critical field and superconductor-metal transition in ultrathin niobium films
- Boundary conditions for spin and charge diffusion in the presence of interfacial spin-orbit coupling
- Superconducting diode effect in diffusive superconductors and Josephson junctions with Rashba spin-orbit coupling
- Nonlinear -model for disordered systems with intrinsic spin-orbit coupling
- Extrinsic Spin-Charge Coupling in Diffusive Superconducting Systems
- Controlling the 2DEG states evolution at a metal/BiSe interface
- Nonreciprocal superconducting transport and the spin Hall effect in gyrotropic structures
- The quasiclassical theory for interfaces with spin--orbit coupling
- Quasiclassical boundary conditions for spin-orbit coupled interfaces with spin-charge conversion
- Emergence of large spin-charge interconversion at an oxidized Cu/W interface
- Magnetoelectric effects in diffusive two-dimensional superconductors studied by the nonlinear model
- Reduced decay in Josephson coupling across ferromagnetic junctions with spin-orbit coupling layers