We study the quasiparticle energy relaxation processes in superconducting Nb films of different thicknesses corresponding to different electron mean-free paths in a nonequilibrium state; that is, the highly dissipative flux-flow state driven up to the instability point. From the measured current-voltage curves we derive the vortex critical velocity v* and the quasiparticle energy relaxation time ?? for several temperatures within the Larkin-Ovchinnikov model. Numerical calculations of the quasiparticle energy relaxation rates are also carried out to support the experimental findings. We observe a reduction of the quasiparticle relaxation time along with an almost constant behavior as a function of the temperature below Tc as the electron mean-free path decreases. These features can be associated with an increasing contribution from the electron-phonon process arising from a larger quasiparticle energy scale involved at the vortex instability. Furthermore, for thicker samples the recombination process dominates over scattering processes in the total quasiparticle relaxation.

Quasiparticle scattering time in niobium superconducting films

Leo A;Grimaldi G;Citro R;Nigro A;Pace S;
2011

Abstract

We study the quasiparticle energy relaxation processes in superconducting Nb films of different thicknesses corresponding to different electron mean-free paths in a nonequilibrium state; that is, the highly dissipative flux-flow state driven up to the instability point. From the measured current-voltage curves we derive the vortex critical velocity v* and the quasiparticle energy relaxation time ?? for several temperatures within the Larkin-Ovchinnikov model. Numerical calculations of the quasiparticle energy relaxation rates are also carried out to support the experimental findings. We observe a reduction of the quasiparticle relaxation time along with an almost constant behavior as a function of the temperature below Tc as the electron mean-free path decreases. These features can be associated with an increasing contribution from the electron-phonon process arising from a larger quasiparticle energy scale involved at the vortex instability. Furthermore, for thicker samples the recombination process dominates over scattering processes in the total quasiparticle relaxation.
2011
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
quasiparticle energy relaxation processes
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/35101
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