We develop a theoretical model to describe the transport properties of normal-metal/thin-ferromagnet/superconductor device. We perform experimental test of the model using a gold tip on PdNi/Nb bilayer. The resonant proximity effect causes conductance features very sensitive to the local ferromagnetic properties, enabling accurate measurement of polarization and thickness of the ferromagnet by point contact spectroscopy.

Resonant Andreev Spectroscopy in normal-Metal/thin-Ferromagnet/Superconductor Device: Theory and Application

ROMEO, FRANCESCO
Conceptualization
;
GIUBILEO, Filippo
Writing – Original Draft Preparation
;
CITRO, Roberta
Formal Analysis
;
DI BARTOLOMEO, Antonio
Investigation
;
ATTANASIO, Carmine
Investigation
;
CIRILLO, CARLA
Investigation
;
ROMANO, Paola
Project Administration
2015-01-01

Abstract

We develop a theoretical model to describe the transport properties of normal-metal/thin-ferromagnet/superconductor device. We perform experimental test of the model using a gold tip on PdNi/Nb bilayer. The resonant proximity effect causes conductance features very sensitive to the local ferromagnetic properties, enabling accurate measurement of polarization and thickness of the ferromagnet by point contact spectroscopy.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11386/4654905
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