Superconducting microconstrictions between Nb tips and high-quality MgB2 pellets have been realized by means of a point-contact inset, driven by a micrometric screw. Measurements of the current-voltage characteristics and of the dynamical conductance versus bias have been performed in the temperature range between 4.2 K and 500 K. Above the Nb critical temperature TC(Nb), the conductance of the MgB2/normal-metal constrictions behaves as predicted by the Blonder-Tinkham-Klapwijk model for low-resistance contacts while highresistance junctions show quasiparticle tunneling characteristics. Consistently, from the whole set of data we infer the value D=2.5±0.2 meV for the three-dimensional 3D gap of MgB2. Below TC(Nb), low-resistance contacts show Josephson current and subharmonic gap structures, due to multiple Andreev reflections. Simultaneous observations of both features unambiguously indicate a coupling of the 3D band of MgB2 with the Nb superconducting order parameter. We found that the temperature dependence of the Josephson critical current follows the classical Ambegaokar-Baratoff behavior with a value ICRN=2.1±0.1 meV at low temperatures.

Subharmonic gap structures and Josephson effect in MgB2/Nb microconstrictions

F Giubileo;F Bobba;A M Cucolo
2005

Abstract

Superconducting microconstrictions between Nb tips and high-quality MgB2 pellets have been realized by means of a point-contact inset, driven by a micrometric screw. Measurements of the current-voltage characteristics and of the dynamical conductance versus bias have been performed in the temperature range between 4.2 K and 500 K. Above the Nb critical temperature TC(Nb), the conductance of the MgB2/normal-metal constrictions behaves as predicted by the Blonder-Tinkham-Klapwijk model for low-resistance contacts while highresistance junctions show quasiparticle tunneling characteristics. Consistently, from the whole set of data we infer the value D=2.5±0.2 meV for the three-dimensional 3D gap of MgB2. Below TC(Nb), low-resistance contacts show Josephson current and subharmonic gap structures, due to multiple Andreev reflections. Simultaneous observations of both features unambiguously indicate a coupling of the 3D band of MgB2 with the Nb superconducting order parameter. We found that the temperature dependence of the Josephson critical current follows the classical Ambegaokar-Baratoff behavior with a value ICRN=2.1±0.1 meV at low temperatures.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/239888
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