Radiopurity screening of materials for rare event searches by neutron activation at the TRIGA reactor of Pavia

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Main Authors: Baccolo, G., Barresi, A., Chiesa, D., Nastasi, M., Previtali, E., Sisti, M.
Format: Preprint
Published: 2024
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author Baccolo, G.
Barresi, A.
Chiesa, D.
Nastasi, M.
Previtali, E.
Sisti, M.
author_facet Baccolo, G.
Barresi, A.
Chiesa, D.
Nastasi, M.
Previtali, E.
Sisti, M.
contents In the framework of physics experiments searching for rare events, the selection of extremely radiopure materials is a challenging task, as the signal of interest is often hidden by instrumental background. Neutron activation is a powerful technique to measure trace contaminants with high sensitivity but, to be properly applied, it requires a good characterization of neutron irradiation and $γ$-spectroscopy facilities. This paper presents the state-of-the-art workflow adopted by the Radioactivity Laboratory of the University of Milano-Bicocca for radiopurity screening of materials by neutron activation performed at the TRIGA reactor in Pavia. The ultimate sensitivity of the described workflow, in the absence of interfering activation products and without the application of radiochemical and/or active background rejection techniques, is $<10^{-14}$ g/g for $^{40}$K, $<10^{-12}$ g/g for $^{238}$U and of the order of $10^{-12}$ g/g for $^{232}$Th contaminations. Further details are here provided to address systematic uncertainties related to neutron irradiation that may bias results. To this aim, a dedicated neutron activation campaign was performed and the data were analyzed exploiting a Monte Carlo simulation model of the reactor and applying an unfolding technique to obtain a comprehensive characterization of the neutron flux in typical irradiation configurations. The results of this work provide a valuable benchmark for the application of neutron activation in future radiopurity screening campaigns.
format Preprint
id arxiv_https___arxiv_org_abs_2411_02212
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Radiopurity screening of materials for rare event searches by neutron activation at the TRIGA reactor of Pavia
Baccolo, G.
Barresi, A.
Chiesa, D.
Nastasi, M.
Previtali, E.
Sisti, M.
Instrumentation and Detectors
Nuclear Experiment
In the framework of physics experiments searching for rare events, the selection of extremely radiopure materials is a challenging task, as the signal of interest is often hidden by instrumental background. Neutron activation is a powerful technique to measure trace contaminants with high sensitivity but, to be properly applied, it requires a good characterization of neutron irradiation and $γ$-spectroscopy facilities. This paper presents the state-of-the-art workflow adopted by the Radioactivity Laboratory of the University of Milano-Bicocca for radiopurity screening of materials by neutron activation performed at the TRIGA reactor in Pavia. The ultimate sensitivity of the described workflow, in the absence of interfering activation products and without the application of radiochemical and/or active background rejection techniques, is $<10^{-14}$ g/g for $^{40}$K, $<10^{-12}$ g/g for $^{238}$U and of the order of $10^{-12}$ g/g for $^{232}$Th contaminations. Further details are here provided to address systematic uncertainties related to neutron irradiation that may bias results. To this aim, a dedicated neutron activation campaign was performed and the data were analyzed exploiting a Monte Carlo simulation model of the reactor and applying an unfolding technique to obtain a comprehensive characterization of the neutron flux in typical irradiation configurations. The results of this work provide a valuable benchmark for the application of neutron activation in future radiopurity screening campaigns.
title Radiopurity screening of materials for rare event searches by neutron activation at the TRIGA reactor of Pavia
topic Instrumentation and Detectors
Nuclear Experiment
url https://arxiv.org/abs/2411.02212