The high-energy neutron component (En > 10 MeV) of the neutron spectrum of PRISMA, a beam-line at the ISIS spallation source, has been characterized for the first time. Neutron measurements using a Single-crystal Diamond Detector at a short-pulse source are obtained by a combination of pulse height and time of flight analysis. An XY scan provides a 2D map of the high-energy neutron beam which has a diameter of about 40 mm. The high neutron flux, that has been found to be (3.8 ± 0.7)·105 cm-2s-1 for En > 10 MeV in the centre, opens up for a possible application of the beam-line as a high-energy neutron irradiation position. Results are of interest for the development of the ChipIR beam-line, which will feature an atmospheric-like neutron spectrum for chip irradiation experiment. Furthermore, these results demonstrate that diamond detectors can be used at spallation sources to investigate the transport of high-energy neutrons down instruments which is of interest in general to designers as high-energy neutrons are a source of background in thermal beamlines.

Cazzaniga, C., Frost, C., Minniti, T., Schooneveld, E., Perelli Cippo, E., Tardocchi, M., et al. (2016). Characterization of the high-energy neutron beam of the PRISMA beamline using a diamond detector. JOURNAL OF INSTRUMENTATION, 11(7) [10.1088/1748-0221/11/07/P07012].

Characterization of the high-energy neutron beam of the PRISMA beamline using a diamond detector

Rebai M.
Penultimo
;
Gorini G.
Ultimo
2016

Abstract

The high-energy neutron component (En > 10 MeV) of the neutron spectrum of PRISMA, a beam-line at the ISIS spallation source, has been characterized for the first time. Neutron measurements using a Single-crystal Diamond Detector at a short-pulse source are obtained by a combination of pulse height and time of flight analysis. An XY scan provides a 2D map of the high-energy neutron beam which has a diameter of about 40 mm. The high neutron flux, that has been found to be (3.8 ± 0.7)·105 cm-2s-1 for En > 10 MeV in the centre, opens up for a possible application of the beam-line as a high-energy neutron irradiation position. Results are of interest for the development of the ChipIR beam-line, which will feature an atmospheric-like neutron spectrum for chip irradiation experiment. Furthermore, these results demonstrate that diamond detectors can be used at spallation sources to investigate the transport of high-energy neutrons down instruments which is of interest in general to designers as high-energy neutrons are a source of background in thermal beamlines.
Articolo in rivista - Articolo scientifico
Beam-line instrumentation (beam position and profile monitors; beam-intensity monitors; bunch length monitors); Diamond detectors; Instrumentation for neutron sources;
Beam-line instrumentation (beam position and profile monitors; beam-intensity monitors; bunch length monitors); Diamond detectors; Instrumentation for neutron sources
English
2016
11
7
P07012
reserved
Cazzaniga, C., Frost, C., Minniti, T., Schooneveld, E., Perelli Cippo, E., Tardocchi, M., et al. (2016). Characterization of the high-energy neutron beam of the PRISMA beamline using a diamond detector. JOURNAL OF INSTRUMENTATION, 11(7) [10.1088/1748-0221/11/07/P07012].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/270974
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