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Proximity effect in planar superconducting tunnel junctions containing Nb/NiCu superconductor/ferromagnet bilayers

Academic Article
Publication Date:
2006
abstract:
We present experimental results concerning both the fabrication and characterization of superconducting tunnel junctions containing superconductor/ferromagnet (S/F) bilayers made by niobium (S) and a weak ferromagnetic Ni0.50Cu0.50 alloy. Josephson junctions have been characterized down to T=1.4 K in terms of current-voltage I-V characteristics and Josephson critical current versus magnetic field. By means of a numerical deconvolution of the I-V data the electronic density of states on both sides of the S/F bilayer has been evaluated at low temperatures. Results have been compared with theoretical predictions from a proximity model for S/F bilayers in the dirty limit in the framework of Usadel equations for the S and F layers, respectively. The main physical parameters characterizing the proximity effect in the Nb/NiCu bilayer, such as the coherence length and the exchange field energy of the F metal, and the S/F interface parameters have been also estimated.
Iris type:
01.01 Articolo in rivista
Keywords:
DENSITY-OF-STATES; FERROMAGNET; SUPERCURRENT; ELECTRODES; METALS
List of contributors:
Pepe, GIOVANNI PIERO; Parlato, Loredana; Ausanio, Giovanni
Handle:
https://iris.cnr.it/handle/20.500.14243/169291
Published in:
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS (ONLINE)
Journal
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