Superconducting spin valve effect in the Co/Pb/Co heterostructure with insulating interlayers
arXiv:2405.10838 · doi:10.3762/bjnano.15.41
Abstract
We report the superconducting properties of the Co/Pb/Co heterostructures with thin insulating interlayers. The main specific feature of these structures is the intentional oxidation of both superconductor/ferromagnet (S/F) interfaces. We study variation of the critical temperature of our systems due to switching between parallel and antiparallel configurations of the magnetizations of the two magnetic layers. Common wisdom suggests that this spin valve effect, which is due to the S/F proximity effect, is most pronounced in the case of perfect metallic contact at the interfaces. Nevertheless, in our structures with intentionally deteriorated interfaces, we observed a significant full spin valve effect. A shift of the superconducting transition temperature by switching the mutual orientation of the magnetizations of the two ferromagnetic Co layers from antiparallel to parallel amounted to K at the optimal thickness of the superconducting Pb layer. Our finding verifies the so far unconfirmed earlier results by Deutscher and Meunier on an F1/S/F2 heterostructure with oxidized interlayers [https://doi.org/10.1103/PhysRevLett.22.395, G. Deutscher and F. Meunier, Phys. Rev. Lett. 22, 395 (1969)] and suggests an alternative route to optimize the performance of the superconducting spin valves.
9 pages, 4 figures
References in corpus (20)
- Spintronics: Fundamentals and applications
- Proximity effects in superconductor-ferromagnet heterostructures
- Odd Triplet Superconductivity and Related Phenomena in Superconductor-Ferromagnet Structures
- Superconducting Spintronics
- Long-range effects in superconductor-ferromagnet structures
- Spin-polarized supercurrents for spintronics: a review of current progress
- Quiet SDS Josephson Junctions for Quantum Computing
- Evidence for Triplet Superconductivity in a Superconductor-Ferromagnet Spin Valve
- Magnetization-dependent shift in F/S/F trilayers with a strong ferromagnet
- Superconducting triplet spin valve
- Triplet proximity effect in FSF trilayers
- Spin-dependent boundary conditions for isotropic superconducting Green's functions
- Full spin switch effect for the superconducting current in a superconductor/ferromagnet thin film heterostructure
- Proximity effects and triplet correlations in Ferromagnet/Ferromagnet/Superconductor nanostructures
- Boosting the superconducting spin valve effect in a metallic superconductor/ferromagnet heterostructure
- Isolation of proximity-induced triplet pairing channel in a superconductor/ferromagnet spin valve
- Superconducting spin-valve effect in heterostructures with ferromagnetic Heusler alloy layers
- Superconducting switching due to triplet component in the Pb/Cu/Ni/Cu/CoCrFeAl spin-valve structure
- Reentrant superconductivity in conical-ferromagnet/superconductor nanostructures
- Spin-Transfer Torque and Magnetoresistance in Superconducting Spin-Valves