Effects of Quasiparticle Diffusion in Nb-Based Superconducting Tunnel Junctions Under X-Rays Irradiation

Author:

Esposito Emanuela1,Frunzio Luigi1,Parlato Loredana1,Cristiano Roberto2,Lisitskii Mikhall2,Nappi Ciro2,Pagano Sergio2,Barone Antonio3,Peluso Giuseppe3,Pepe Giovanni Piero3

Affiliation:

1. Osservatorio Astronomico di Capodimonte, Via Moiariello 16, Napoli, I-80131, Italy

2. Istituto di Cibernetica del CNR, Via Toiano 6, Arco Felice, Napoli, I-80072, Italy

3. I.N.F.M.-Dipartimento di Scienze fisiche, Universit "Federico II", Piazzale Tecchio 81, Napoli, I-80125, Italy

Abstract

A novel class of sensors is constituted by radiation detectors based on superconducting tunnel junctions, which could lead in the next future to an advanced instrumentation with an interesting fall out for applications. So far, this area is restricted to LTc superconductors. Among them, niobium has the highest critical temperature and is therefore less demanding in terms of operational temperature. The best performances achieved so far in pure Nb-based junction are far away from the expected theoretical limit. The reason of this discrepancy could be attributed to various problems. Quasiparticle diffusion and edge losses seem to be responsible for the broadening of the signal amplitude spectra so often observed and reported in literature. In this paper we report on efforts to investigate the response to X-Ray of Nb-based superconducting tunnel junctions in terms of a model which includes the quasiparticle diffusion and the edge losses. Our model takes into account the contribution from both the electrodes of the junction and well reproduces the experimental data.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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