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Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search
This paper reports on the development of a technology involving [Formula: see text] -enriched scintillating bolometers, compatible with the goals of CUPID, a proposed next-generation bolometric experiment to search for neutrinoless double-beta decay. Large mass ([Formula: see text] ), high optical q...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer Berlin Heidelberg
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956908/ https://www.ncbi.nlm.nih.gov/pubmed/31997932 http://dx.doi.org/10.1140/epjc/s10052-017-5343-2 |
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author | Armengaud, E. Augier, C. Barabash, A. S. Beeman, J. W. Bekker, T. B. Bellini, F. Benoît, A. Bergé, L. Bergmann, T. Billard, J. Boiko, R. S. Broniatowski, A. Brudanin, V. Camus, P. Capelli, S. Cardani, L. Casali, N. Cazes, A. Chapellier, M. Charlieux, F. Chernyak, D. M. de Combarieu, M. Coron, N. Danevich, F. A. Dafinei, I. Jesus, M. De Devoyon, L. Domizio, S. Di Dumoulin, L. Eitel, K. Enss, C. Ferroni, F. Fleischmann, A. Foerster, N. Gascon, J. Gastaldo, L. Gironi, L. Giuliani, A. Grigorieva, V. D. Gros, M. Hehn, L. Hervé, S. Humbert, V. Ivannikova, N. V. Ivanov, I. M. Jin, Y. Juillard, A. Kleifges, M. Kobychev, V. V. Konovalov, S. I. Koskas, F. Kozlov, V. Kraus, H. Kudryavtsev, V. A. Laubenstein, M. Sueur, H. Le Loidl, M. Magnier, P. Makarov, E. P. Mancuso, M. de Marcillac, P. Marnieros, S. Marrache-Kikuchi, C. Nagorny, S. Navick, X-F. Nikolaichuk, M. O. Nones, C. Novati, V. Olivieri, E. Pagnanini, L. Pari, P. Pattavina, L. Pavan, M. Paul, B. Penichot, Y. Pessina, G. Piperno, G. Pirro, S. Plantevin, O. Poda, D. V. Queguiner, E. Redon, T. Rodrigues, M. Rozov, S. Rusconi, C. Sanglard, V. Schäffner, K. Scorza, S. Shlegel, V. N. Siebenborn, B. Strazzer, O. Tcherniakhovski, D. Tomei, C. Tretyak, V. I. Umatov, V. I. Vagneron, L. Vasiliev, Ya. V. Velázquez, M. Vignati, M. Weber, M. Yakushev, E. Zolotarova, A. S. |
author_facet | Armengaud, E. Augier, C. Barabash, A. S. Beeman, J. W. Bekker, T. B. Bellini, F. Benoît, A. Bergé, L. Bergmann, T. Billard, J. Boiko, R. S. Broniatowski, A. Brudanin, V. Camus, P. Capelli, S. Cardani, L. Casali, N. Cazes, A. Chapellier, M. Charlieux, F. Chernyak, D. M. de Combarieu, M. Coron, N. Danevich, F. A. Dafinei, I. Jesus, M. De Devoyon, L. Domizio, S. Di Dumoulin, L. Eitel, K. Enss, C. Ferroni, F. Fleischmann, A. Foerster, N. Gascon, J. Gastaldo, L. Gironi, L. Giuliani, A. Grigorieva, V. D. Gros, M. Hehn, L. Hervé, S. Humbert, V. Ivannikova, N. V. Ivanov, I. M. Jin, Y. Juillard, A. Kleifges, M. Kobychev, V. V. Konovalov, S. I. Koskas, F. Kozlov, V. Kraus, H. Kudryavtsev, V. A. Laubenstein, M. Sueur, H. Le Loidl, M. Magnier, P. Makarov, E. P. Mancuso, M. de Marcillac, P. Marnieros, S. Marrache-Kikuchi, C. Nagorny, S. Navick, X-F. Nikolaichuk, M. O. Nones, C. Novati, V. Olivieri, E. Pagnanini, L. Pari, P. Pattavina, L. Pavan, M. Paul, B. Penichot, Y. Pessina, G. Piperno, G. Pirro, S. Plantevin, O. Poda, D. V. Queguiner, E. Redon, T. Rodrigues, M. Rozov, S. Rusconi, C. Sanglard, V. Schäffner, K. Scorza, S. Shlegel, V. N. Siebenborn, B. Strazzer, O. Tcherniakhovski, D. Tomei, C. Tretyak, V. I. Umatov, V. I. Vagneron, L. Vasiliev, Ya. V. Velázquez, M. Vignati, M. Weber, M. Yakushev, E. Zolotarova, A. S. |
author_sort | Armengaud, E. |
collection | PubMed |
description | This paper reports on the development of a technology involving [Formula: see text] -enriched scintillating bolometers, compatible with the goals of CUPID, a proposed next-generation bolometric experiment to search for neutrinoless double-beta decay. Large mass ([Formula: see text] ), high optical quality, radiopure [Formula: see text] -containing zinc and lithium molybdate crystals have been produced and used to develop high performance single detector modules based on 0.2–0.4 kg scintillating bolometers. In particular, the energy resolution of the lithium molybdate detectors near the Q-value of the double-beta transition of [Formula: see text] (3034 keV) is 4–6 keV FWHM. The rejection of the [Formula: see text] -induced dominant background above 2.6 MeV is better than [Formula: see text] . Less than [Formula: see text] activity of [Formula: see text] and [Formula: see text] in the crystals is ensured by boule recrystallization. The potential of [Formula: see text] -enriched scintillating bolometers to perform high sensitivity double-beta decay searches has been demonstrated with only [Formula: see text] exposure: the two neutrino double-beta decay half-life of [Formula: see text] has been measured with the up-to-date highest accuracy as [Formula: see text] = [6.90 ± 0.15(stat.) ± 0.37(syst.)] [Formula: see text] . Both crystallization and detector technologies favor lithium molybdate, which has been selected for the ongoing construction of the CUPID-0/Mo demonstrator, containing several kg of [Formula: see text] . |
format | Online Article Text |
id | pubmed-6956908 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Springer Berlin Heidelberg |
record_format | MEDLINE/PubMed |
spelling | pubmed-69569082020-01-27 Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search Armengaud, E. Augier, C. Barabash, A. S. Beeman, J. W. Bekker, T. B. Bellini, F. Benoît, A. Bergé, L. Bergmann, T. Billard, J. Boiko, R. S. Broniatowski, A. Brudanin, V. Camus, P. Capelli, S. Cardani, L. Casali, N. Cazes, A. Chapellier, M. Charlieux, F. Chernyak, D. M. de Combarieu, M. Coron, N. Danevich, F. A. Dafinei, I. Jesus, M. De Devoyon, L. Domizio, S. Di Dumoulin, L. Eitel, K. Enss, C. Ferroni, F. Fleischmann, A. Foerster, N. Gascon, J. Gastaldo, L. Gironi, L. Giuliani, A. Grigorieva, V. D. Gros, M. Hehn, L. Hervé, S. Humbert, V. Ivannikova, N. V. Ivanov, I. M. Jin, Y. Juillard, A. Kleifges, M. Kobychev, V. V. Konovalov, S. I. Koskas, F. Kozlov, V. Kraus, H. Kudryavtsev, V. A. Laubenstein, M. Sueur, H. Le Loidl, M. Magnier, P. Makarov, E. P. Mancuso, M. de Marcillac, P. Marnieros, S. Marrache-Kikuchi, C. Nagorny, S. Navick, X-F. Nikolaichuk, M. O. Nones, C. Novati, V. Olivieri, E. Pagnanini, L. Pari, P. Pattavina, L. Pavan, M. Paul, B. Penichot, Y. Pessina, G. Piperno, G. Pirro, S. Plantevin, O. Poda, D. V. Queguiner, E. Redon, T. Rodrigues, M. Rozov, S. Rusconi, C. Sanglard, V. Schäffner, K. Scorza, S. Shlegel, V. N. Siebenborn, B. Strazzer, O. Tcherniakhovski, D. Tomei, C. Tretyak, V. I. Umatov, V. I. Vagneron, L. Vasiliev, Ya. V. Velázquez, M. Vignati, M. Weber, M. Yakushev, E. Zolotarova, A. S. Eur Phys J C Part Fields Regular Article - Experimental Physics This paper reports on the development of a technology involving [Formula: see text] -enriched scintillating bolometers, compatible with the goals of CUPID, a proposed next-generation bolometric experiment to search for neutrinoless double-beta decay. Large mass ([Formula: see text] ), high optical quality, radiopure [Formula: see text] -containing zinc and lithium molybdate crystals have been produced and used to develop high performance single detector modules based on 0.2–0.4 kg scintillating bolometers. In particular, the energy resolution of the lithium molybdate detectors near the Q-value of the double-beta transition of [Formula: see text] (3034 keV) is 4–6 keV FWHM. The rejection of the [Formula: see text] -induced dominant background above 2.6 MeV is better than [Formula: see text] . Less than [Formula: see text] activity of [Formula: see text] and [Formula: see text] in the crystals is ensured by boule recrystallization. The potential of [Formula: see text] -enriched scintillating bolometers to perform high sensitivity double-beta decay searches has been demonstrated with only [Formula: see text] exposure: the two neutrino double-beta decay half-life of [Formula: see text] has been measured with the up-to-date highest accuracy as [Formula: see text] = [6.90 ± 0.15(stat.) ± 0.37(syst.)] [Formula: see text] . Both crystallization and detector technologies favor lithium molybdate, which has been selected for the ongoing construction of the CUPID-0/Mo demonstrator, containing several kg of [Formula: see text] . Springer Berlin Heidelberg 2017-11-21 2017 /pmc/articles/PMC6956908/ /pubmed/31997932 http://dx.doi.org/10.1140/epjc/s10052-017-5343-2 Text en © The Author(s) 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. Funded by SCOAP3 |
spellingShingle | Regular Article - Experimental Physics Armengaud, E. Augier, C. Barabash, A. S. Beeman, J. W. Bekker, T. B. Bellini, F. Benoît, A. Bergé, L. Bergmann, T. Billard, J. Boiko, R. S. Broniatowski, A. Brudanin, V. Camus, P. Capelli, S. Cardani, L. Casali, N. Cazes, A. Chapellier, M. Charlieux, F. Chernyak, D. M. de Combarieu, M. Coron, N. Danevich, F. A. Dafinei, I. Jesus, M. De Devoyon, L. Domizio, S. Di Dumoulin, L. Eitel, K. Enss, C. Ferroni, F. Fleischmann, A. Foerster, N. Gascon, J. Gastaldo, L. Gironi, L. Giuliani, A. Grigorieva, V. D. Gros, M. Hehn, L. Hervé, S. Humbert, V. Ivannikova, N. V. Ivanov, I. M. Jin, Y. Juillard, A. Kleifges, M. Kobychev, V. V. Konovalov, S. I. Koskas, F. Kozlov, V. Kraus, H. Kudryavtsev, V. A. Laubenstein, M. Sueur, H. Le Loidl, M. Magnier, P. Makarov, E. P. Mancuso, M. de Marcillac, P. Marnieros, S. Marrache-Kikuchi, C. Nagorny, S. Navick, X-F. Nikolaichuk, M. O. Nones, C. Novati, V. Olivieri, E. Pagnanini, L. Pari, P. Pattavina, L. Pavan, M. Paul, B. Penichot, Y. Pessina, G. Piperno, G. Pirro, S. Plantevin, O. Poda, D. V. Queguiner, E. Redon, T. Rodrigues, M. Rozov, S. Rusconi, C. Sanglard, V. Schäffner, K. Scorza, S. Shlegel, V. N. Siebenborn, B. Strazzer, O. Tcherniakhovski, D. Tomei, C. Tretyak, V. I. Umatov, V. I. Vagneron, L. Vasiliev, Ya. V. Velázquez, M. Vignati, M. Weber, M. Yakushev, E. Zolotarova, A. S. Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title | Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title_full | Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title_fullStr | Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title_full_unstemmed | Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title_short | Development of [Formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
title_sort | development of [formula: see text] -containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search |
topic | Regular Article - Experimental Physics |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6956908/ https://www.ncbi.nlm.nih.gov/pubmed/31997932 http://dx.doi.org/10.1140/epjc/s10052-017-5343-2 |
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