Field-free anomalous junction and superconducting diode effect in spin split superconductor/topological insulator junctions
arXiv:2209.13987 · doi:10.1103/PhysRevB.106.214504
Abstract
We study the transport properties of a diffusive Josephson junction between two spin-split superconductors made of superconductor-ferromagnetic insulator bilayers (FIS) on top of a 3D topological insulator (TI). We derive the corresponding Usadel equation describing the quasiclassical Green's functions in these systems and first solve the equation analytically in the weak-proximity case. We demonstrate the appearance of an anomalous phase in the absence of an external magnetic field. We also explore non-reciprocal electronic transport. Specifically, we calculate the junction's diode efficiency by solving the Usadel equation. We obtain a sizable diode effect even at zero applied magnetic field. We discuss how the diode efficiency depends on the different parameters and find a non-monotonic behavior of with temperature.
9 pages, 6 figures
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