Long range proximity effect in High Tc Josephson NanoJunctions: a quantitative study
ORAL
Abstract
Proximity effect (PE) between a superconductor S and a normal metal N has been a powerful tool to study conventional superconductors. In High Tc (HTc) compounds, low quality interfaces and poor Fermi wave-vector match with most of metals considerably reduce the PE, and make really difficult its study. We have designed Josephson NanoJunctions in which two S reservoirs are coupled through an N layer at a nanoscale, where N is a lightly disordered HTc, whose Tc has been reduced by ion irradiation. In these SNS junctions, Cooper pairs propagate through the N layer by PE. In this situation with no metallurgical interfaces within the same material, we have shown that a long range PE takes place, which can be quantitatively described by the diffusive Usadel equations. The Josephson coupling temperature can be computed. The role of the order parameter symmetry will be also discussed.
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Authors
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Jerome Lesueur
Physique Quantique, LPEM-CNRS-ESPCI, 10 Rue Vauquelin, 75231 Paris, France
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Nicolas Bergeal
Yale University Applied Physics, Physique Quantique, LPEM-CNRS-ESPCI, 10 Rue Vauquelin, 75231 Paris, France
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Marco Aprili
LPS-Universite Paris Sud, Bat 510, 91 405 Orsay Cedex, France, Laboratoire de Physique des Solides, Univ. Paris-Sud, CNRS, UMR 8502, F-91405 Orsay Cedex, France
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Takis Kontos
LPA – ENS, 24 rue Lhomond, 75005 Paris, France
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Martin Sirena
Physique Quantique, LPEM-CNRS-ESPCI, 10 Rue Vauquelin, 75231 Paris, France
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G. Faini
LPN-CNRS, Route de Nozay, 91460 Marcoussis, France, Lab. Photonique et Nanostructures
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Jean-Pierre Contour
UMR-CNRS/THALES, Route N128, 91120 Palaiseau, France