Chemical purification of molybdenum samples for the NEMO 3 experiment

Most currently, viable double beta decay experiments require highly enriched isotopic sources. These sources must be extraordinarily free of radioactive contamination. The double beta decay experiment NEMO 3 will study 100Mo, for which physical and chemical purification techniques have been investig...

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Published inNuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Vol. 474; no. 1; pp. 93 - 100
Main Authors Arnold, R., Augier, C., Baker, J., Barabash, A., Bing, O., Blum, D., Brudanin, V., Caffrey, A.J., Campagne, J.E., Caurier, E., Dassie, D., Egorov, V., Errahmane, K., Filipova, T., Guyonnet, J.L., Hubert, F., Hubert, Ph, Jullian, S., Kochetov, O., Kisel, I., Kornoukhov, V.N., Kovalenko, V., Kuzichev, V.F., Lalanne, D., Laplanche, F., Leccia, F., Linck, I., Longuemare, C., Marquet, Ch, Mauger, F., Nicholson, H.W., Nikolic-Audit, I., Pilugin, I., Piquemal, F., Reyss, J-L., Riddle, C.L., Sarazin, X., Scheibling, F., Stekl, I., Suhonen, J., Sutton, C.S., Szklarz, G., Timkin, V., Tretyak, V., Umatov, V., Vanyushin, I., Vorobel, V., Vylov, Ts
Format Journal Article
LanguageEnglish
Published Elsevier B.V 21.11.2001
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Abstract Most currently, viable double beta decay experiments require highly enriched isotopic sources. These sources must be extraordinarily free of radioactive contamination. The double beta decay experiment NEMO 3 will study 100Mo, for which physical and chemical purification techniques have been investigated. The success of the chemical purification process is discussed in the context of ultra-low background, high-purity germanium spectrometer measurements.
AbstractList Most currently, viable double beta decay experiments require highly enriched isotopic sources. These sources must be extraordinarily free of radioactive contamination. The double beta decay experiment NEMO 3 will study 100Mo, for which physical and chemical purification techniques have been investigated. The success of the chemical purification process is discussed in the context of ultra-low background, high-purity germanium spectrometer measurements.
Author Nikolic-Audit, I.
Piquemal, F.
Caurier, E.
Vanyushin, I.
Hubert, Ph
Lalanne, D.
Suhonen, J.
Augier, C.
Blum, D.
Mauger, F.
Arnold, R.
Campagne, J.E.
Marquet, Ch
Guyonnet, J.L.
Linck, I.
Baker, J.
Filipova, T.
Tretyak, V.
Caffrey, A.J.
Riddle, C.L.
Jullian, S.
Sarazin, X.
Kisel, I.
Brudanin, V.
Egorov, V.
Bing, O.
Dassie, D.
Kovalenko, V.
Vylov, Ts
Kornoukhov, V.N.
Longuemare, C.
Laplanche, F.
Leccia, F.
Timkin, V.
Barabash, A.
Nicholson, H.W.
Pilugin, I.
Szklarz, G.
Errahmane, K.
Stekl, I.
Sutton, C.S.
Scheibling, F.
Vorobel, V.
Hubert, F.
Kuzichev, V.F.
Umatov, V.
Kochetov, O.
Reyss, J-L.
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Keywords 23.40.−s
Double beta decay
HPGe spectrometry
Molybdenum
NEMO 3
Language English
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Snippet Most currently, viable double beta decay experiments require highly enriched isotopic sources. These sources must be extraordinarily free of radioactive...
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SubjectTerms Double beta decay
HPGe spectrometry
Molybdenum
NEMO 3
Title Chemical purification of molybdenum samples for the NEMO 3 experiment
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