Josephson tunnel junctions with ferromagnetic 0.750.25 barriers
Abstract
Josephson tunnel junctions with the strong ferromagnetic alloy 0.750.25 as the barrier material were studied. The junctions were prepared with high quality down to a thickness range of a few monolayers of Fe-Co. An oscillation length of F2≈ 0.79\: nm between 0 and π-Josephson phase coupling and a very short decay length F1≈ 0.22\: nm for the amplitude of the superconducting pair wave function in the Fe-Co layer were determined. The rapid damping of the pair wave function inside the Fe-Co layer is caused by the strong ferromagnetic exchange field and additional magnetic pair breaking scattering. Josephson junctions with Fe-Co barriers show a significantly increased tendency towards magnetic remanence and flux trapping for larger thicknesses dF.