Spin Josephson diode effect induced by higher-harmonic spin Josephson currents in a diffusive Josephson junction
arXiv:2608.01991 · doi:10.1088/1361-648X/ae8d6b
Abstract
We theoretically investigate the spin Josephson diode effect (SJDE) in a diffusive Josephson junction with a Rashba metal layer under a ferromagnetic exchange field. Within the quasiclassical Green's function framework, we derive analytical expressions for the first- and second-harmonic spin Josephson currents. The interplay between Rashba spin-orbit interaction and the exchange field breaks inversion and time-reversal symmetries, generating additional cosine terms in the spin current-phase relations and a finite phi0 phase shift. This phase shift induces an intrinsic asymmetry between forward and backward spin currents, leading to the SJDE without an external magnetic field. Numerical results show that the efficiency decreases with increasing metal thickness due to suppression of the second-harmonic component, while its dependence on spin-orbit interaction strength reflects competing effects between phase shift enhancement and harmonic suppression. These findings demonstrate that the interplay between harmonic components provides a mechanism for nonreciprocal spin transport without requiring suppression of spin-singlet correlations.
17 pages, 8 figures
References in corpus (7)
- Direct coupling between magnetism and superconducting current in Josephson Phi junction
- Flux-Tunable Josephson Diode Effect in a Hybrid Four-Terminal Josephson Junction
- Anomalous supercurrent and diode effect in locally perturbed topological Josephson junctions
- Field-free superconducting diode effect and magnetochiral anisotropy in FeTe0.7Se0.3 junctions with the inherent asymmetric barrier
- Superconducting Diode Effect in Two-dimensional Topological Insulator Edges and Josephson Junctions
- Theory of quantum-geometric charge and spin Josephson diode effects in strongly spin-polarized hybrid structures with noncoplanar spin textures
- Perturbative Analysis of the Field-Free Josephson Diode Effect in a Multilayered Josephson Junction