Ultrathin microstrips based on polycrystalline NbRe films were investigated in order to preliminarily test the suitability of this material for the realization of superconducting single-photon detectors. The voltage-current characteristics measured on these samples show clear hysteresis. This is a fundamental ingredient for investigating single-photon detection as well as single vortex fluctuation phenomena in 2D NbRe-based devices.

Ultrathin superconducting NbRe microstrips with hysteretic voltage-current characteristic / Cirillo, C.; Caputo, M.; Parlato, L.; Ejrnaes, M.; Salvoni, D.; Cristiano, R.; Pepe, G. P.; Attanasio, C.. - In: FIZIKA NIZKIH TEMPERATUR. - ISSN 0132-6414. - 46:4(2020), pp. 457-461. [10.1063/10.0000871]

Ultrathin superconducting NbRe microstrips with hysteretic voltage-current characteristic

Parlato L.;Salvoni D.;Pepe G. P.;
2020

Abstract

Ultrathin microstrips based on polycrystalline NbRe films were investigated in order to preliminarily test the suitability of this material for the realization of superconducting single-photon detectors. The voltage-current characteristics measured on these samples show clear hysteresis. This is a fundamental ingredient for investigating single-photon detection as well as single vortex fluctuation phenomena in 2D NbRe-based devices.
2020
Ultrathin superconducting NbRe microstrips with hysteretic voltage-current characteristic / Cirillo, C.; Caputo, M.; Parlato, L.; Ejrnaes, M.; Salvoni, D.; Cristiano, R.; Pepe, G. P.; Attanasio, C.. - In: FIZIKA NIZKIH TEMPERATUR. - ISSN 0132-6414. - 46:4(2020), pp. 457-461. [10.1063/10.0000871]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/830753
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