Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor the thermal neutron cavity of the E_LIBANS project. Silicon and silicon carbide semiconductors, plus vented air ion chambers, were chosen for this purpose. This communication describes the performance of these detectors, owing on the results of dedicated measurement campaigns.

DEVELOPING RADIATION RESISTANT THERMAL NEUTRON DETECTORS FOR THE E_LIBANS PROJECT: PRELIMINARY RESULTS

Bedogni, R;Costa, M;Monti, V;Sans Planell, O;Durisi, E;Ferrero, M;Anglesio, S;L. Visca
2018-01-01

Abstract

Radiation-resistant, gamma-insensitive, active thermal neutron detectors were developed to monitor the thermal neutron cavity of the E_LIBANS project. Silicon and silicon carbide semiconductors, plus vented air ion chambers, were chosen for this purpose. This communication describes the performance of these detectors, owing on the results of dedicated measurement campaigns.
2018
180
1-4
304
308
https://doi.org/10.1093/rpd/ncx298
Carbon Compounds, Inorganic; Computer Simulation; Equipment Design; Radiation Dosage; Radiation Monitoring; Radiation Protection; Semiconductors; Silicon; Silicon Compounds; Temperature; Neutrons
Treccani, M; Bedogni, R; Pola, A; Costa, M; Monti, V; Sans Planell, O; Romano, M; Durisi, E; Visca, D L; Bortot, D; Gomez-Ros, J M; Ferrero, M; Angles...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1703823
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