The BiPo-3 detector.

P Loaiza,A S Barabash, A Basharina-Freshville, E Birdsall, S Blondel,S Blot, M Bongrand, D Boursette,V Brudanin,J Busto,A J Caffrey, S Calvez,M Cascella,C Cerna,E Chauveau,A Chopra,S De Capua,D Duchesneau,D Durand,V Egorov,G Eurin,J J Evans,L Fajt, D Filosofov,R Flack,X Garrido,H Gómez, B Guillon, P Guzowski, K Holý,R Hodák,A Huber,C Hugon,A Jeremie, S Jullian, M Kauer,A Klimenko, O Kochetov, S I Konovalov,V Kovalenko, K Lang, Y Lemière,T Le Noblet,Z Liptak,X R Liu,G Lutter,M Macko, F Mamedov,C Marquet, F Mauger,B Morgan,J Mott,I Nemchenok, M Nomachi, F Nova,H Ohsumi,G Oliviéro,R B Pahlka, J Pater,F Perrot,F Piquemal,P Povinec, P Přidal,Y A Ramachers,A Remoto,B Richards,C L Riddle, E Rukhadze, R Saakyan, X Sarazin,Yu Shitov, L Simard,F Šimkovic,A Smetana, K Smolek,A Smolnikov,S Söldner-Rembold,B Soulé,I Štekl,J Thomas,V Timkin,S Torre,Vl I Tretyak,V I Tretyak,V I Umatov,C Vilela,V Vorobel,D Waters,A Žukauskas

Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine(2017)

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摘要
The BiPo-3 detector is a low radioactive detector dedicated to measuring ultra-low natural contaminations of 208Tl and 214Bi in thin materials, initially developed to measure the radiopurity of the double β decay source foils of the SuperNEMO experiment at the μBq/kg level. The BiPo-3 technique consists in installing the foil of interest between two thin ultra-radiopure scintillators coupled to low radioactive photomultipliers. The design and performances of the detector are presented. In this paper, the final results of the 208Tl and 214Bi activity measurements of the first enriched 82Se foils are reported for the first time, showing the capability of the detector to reach sensitivities in the range of some μBq/kg.
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