Superconducting and Magnetic Properties of Nb/Pd_1-xFe_x/Nb Triple Layers
arXiv:cond-mat/9812278 · doi:10.1007/s100510050100
Abstract
The superconducting and magnetic properties of Nb/Pd_1-xFe_x/Nb triple layers with constant Nb layer thickness d_Nb=200 A and different interlayer thicknesses are investigated. The thickness dependence of the magnetization and of the superconducting transition temperature shows that for small iron concentration x the Pd_1-xFe_x layer is likely to be in the paramagnetic state for very thin films whereas ferromagnetic order is established for x>=0.13. The parallel critical field B_c2II(T) exhibits a crossover from two-dimensional (2D) behavior where the Nb films are coupled across the interlayer, towards a 2D behavior of coupled Nb films with increasing d_PdFe or x. This 2D-2D crossover allows a determination of the penetration depth xi_F of Cooper pairs into the Pd_1-xFe_x layer as a function of x. For samples with a ferromagnetic interlayer xi_ is found to be independent of x.
9 pages, 8 figures
Cited by in corpus (10)
- Symmetries of Pairing Correlations in Superconductor-Ferromagnet Nanostructures
- Re-entrant superconductivity in Nb/Cu(1-x)Ni(x) bilayers
- Oscillations of Andreev states in clean ferromagnetic films
- Reentrant superconductivity in superconductor/ferromagnetic-alloy bilayers
- Superconducting proximity effect in clean ferromagnetic layers
- Finite-temperature magnetism of FePd and CoPt alloys
- Magnetic properties of thin epitaxial PdFe alloy films
- Long-range proximity effect in Nb-based heterostructures induced by a magnetically inhomogeneous permalloy layer
- Giant coercivity enhancement and dimensional crossover of superconductivity in Co2FeSi-NbN nanoscale bilayers
- Microscopic theory of equilibrium properties of F/S/F trilayers with weak ferromagnets