A new directional neutron spectrometer called NCT-WES (Neutron Capture Therapy Wide Energy Spectrometer) was recently developed within the INFN ENTER_BNCT project. This device constitutes a more compact and portable alternative to stateof-the-art directional neutron spectrometers. The device was used for the first time to characterise the near-target field produced by an accelerator-driven D-D fusion neutron source. NCT-WES operates as a "parallelised" Bonner spheres spectrometer, embedding six semiconductor-based thermal neutron detectors in a cylindrical moderator. Owing on a cylindrical collimating aperture, the device exhibits sharply directional response. To account for the non-uniform irradiation condition experienced in the near-target field, a dedicated NCT-WES response matrix was developed. The neutron spectrum at 0 degrees from the D-D neutron target, determined by means of the FRUIT unfolding code, is coherent with that previously derived with Bonner spheres. NCT-WES proved to be a promising device for angular spectrometric characterisation of neutron-emitting targets.

Measuring the near-target neutron field of a D-D fusion facility with the novel NCT-WES spectrometer

Bedogni, R;Fontanilla, A;Mafucci, E;Monti, V;Gomez-Ros, JM;Pietropaolo, A
2022-01-01

Abstract

A new directional neutron spectrometer called NCT-WES (Neutron Capture Therapy Wide Energy Spectrometer) was recently developed within the INFN ENTER_BNCT project. This device constitutes a more compact and portable alternative to stateof-the-art directional neutron spectrometers. The device was used for the first time to characterise the near-target field produced by an accelerator-driven D-D fusion neutron source. NCT-WES operates as a "parallelised" Bonner spheres spectrometer, embedding six semiconductor-based thermal neutron detectors in a cylindrical moderator. Owing on a cylindrical collimating aperture, the device exhibits sharply directional response. To account for the non-uniform irradiation condition experienced in the near-target field, a dedicated NCT-WES response matrix was developed. The neutron spectrum at 0 degrees from the D-D neutron target, determined by means of the FRUIT unfolding code, is coherent with that previously derived with Bonner spheres. NCT-WES proved to be a promising device for angular spectrometric characterisation of neutron-emitting targets.
2022
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7
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Bedogni, R; Calamida, A; Fontanilla, A; Campoy, AIC; Napolitano, T; Cantone, C; Mafucci, E; Monti, V; Altieri, S; Gomez-Ros, JM; Pillon, M; Pietropaolo, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1890973
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