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Detection of X - ray photons by Niobium Josephson tunnel junction with trapped Abrikosov vortices

Poster
Data di Pubblicazione:
2013
Abstract:
The high atomic number of Niobium (Z=41) can be exploited to develop a high efficiency superconducting gamma-ray detector based on a novel detection principle, namely, the interaction of a single gamma-ray photon with Abrikosov vortices trapped inside a Niobium bulk absorber. To study the feasibility of this principle, Niobium type Josephson tunnel junctions with the Aluminium oxide as a tunnel barrier and with a thick (0.3 mm) Niobium base electrode have been fabricated. The devices have been tested at T = 4.2 K in terms of the current-voltage characteristic and of the magnetic field dependence of the Josephson critical current. The feasibility of the detection principle has been tested under X-ray irradiation from the 55Fe source. The time dependence of the Josephson critical current of the junction with trapped Abrikosov vortices has been recorded without and with X-ray irradiation. The data analysis of obtained experimental curves has confirmed the effect of the X-ray photon absorption on the Josephson critical current caused by jumping of Abrikosov vortices.
Tipologia CRIS:
04.03 Poster in Atti di convegno
Keywords:
Superconductivitu; Abrikosov vortices; photon detector; Josephson effect
Elenco autori:
Lisitskiy, Mikhail; Camerlingo, Carlo
Autori di Ateneo:
LISITSKIY MIKHAIL
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/216291
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