Rare event searches demand extremely low background levels, necessitating ever-advancing screening techniques to enhance sensitivity. Liquid scintillators are highly attractive as detector media due to their inherent radiopurity and scalability in mass. In this work, we present a screening procedure to measure ultra-trace concentrations of natural contaminants – 238U and 232Th – with sensitivities at the 10-15 g/g level. Our method combines neutron activation analysis with radiochemical techniques, followed by β/γ coincidence spectroscopy to minimize interference backgrounds. This approach achieves sensitivities of 0.65·10-15 g/g for 238U and 1.9·10-15 g/g for 232Th, among the best reported worldwide. Potential pathways for further sensitivity improvements are outlined in the conclusions.
Ultra-trace analysis of U and Th in organic liquid scintillators with high sensitivity
Mantovani, F.Membro del Collaboration Group
;Montuschi, M.Membro del Collaboration Group
;Ricci, B.Membro del Collaboration Group
;Serafini, A.Membro del Collaboration Group
;Strati, V.Membro del Collaboration Group
;
2026
Abstract
Rare event searches demand extremely low background levels, necessitating ever-advancing screening techniques to enhance sensitivity. Liquid scintillators are highly attractive as detector media due to their inherent radiopurity and scalability in mass. In this work, we present a screening procedure to measure ultra-trace concentrations of natural contaminants – 238U and 232Th – with sensitivities at the 10-15 g/g level. Our method combines neutron activation analysis with radiochemical techniques, followed by β/γ coincidence spectroscopy to minimize interference backgrounds. This approach achieves sensitivities of 0.65·10-15 g/g for 238U and 1.9·10-15 g/g for 232Th, among the best reported worldwide. Potential pathways for further sensitivity improvements are outlined in the conclusions.| File | Dimensione | Formato | |
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Ultra-trace analysis of U and Th in organic liquid scintillators with high sensitivity.pdf
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