Double-beta decay of $$^{130}\hbox {Te}$$ to the first $$0^+$$ excited state of $$^{130}\hbox {Xe}$$ with CUORE-0

We report on a search for double beta decay of $$^{130}\hbox {Te}$$ 130 Te to the first $$0^{+}$$ 0 + excited state of $$^{130}\hbox {Xe}$$ 130 Xe using a $$9.8\,\hbox {kg}\cdot \hbox {yr}$$ 9.8 kg · yr exposure of $$^{130}\hbox {Te}$$ 130 Te collected with the CUORE-0 experiment. In this work we ex...

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Veröffentlicht in:The European physical journal. C, Particles and fields Particles and fields, 2019-09, Vol.79 (9), Article 795
Hauptverfasser: Alduino, C., Alfonso, K., Artusa, D. R., Avignone III, F. T., Azzolini, O., Banks, T. I., Bari, G., Beeman, J. W., Bellini, F., Bersani, A., Biassoni, M., Brofferio, C., Bucci, C., Camacho, A., Caminata, A., Canonica, L., Cao, X. G., Capelli, S., Cappelli, L., Carbone, L., Cardani, L., Carniti, P., Casali, N., Cassina, L., Chiesa, D., Chott, N., Clemenza, M., Copello, S., Cosmelli, C., Cremonesi, O., Creswick, R. J., Cushman, J. S., D’Addabbo, A., Dafinei, I., Davis, C. J., Dell’Oro, S., Deninno, M. M., Domizio, S. Di, Vacri, M. L. Di, Drobizhev, A., Fang, D. Q., Faverzani, M., Feintzeig, J., Fernandes, G., Ferri, E., Ferroni, F., Fiorini, E., Franceschi, M. A., Freedman, S. J., Fujikawa, B. K., Giachero, A., Gironi, L., Giuliani, A., Gladstone, L., Gorla, P., Gotti, C., Gutierrez, T. D., Haller, E. E., Han, K., Hansen, E., Heeger, K. M., Hennings-Yeomans, R., Hickerson, K. P., Huang, H. Z., Kadel, R., Keppel, G., Kolomensky, Yu. G., Leder, A., Ligi, C., Lim, K. E., Liu, X., Ma, Y. G., Maino, M., Marini, L., Martinez, M., Maruyama, R. H., Mei, Y., Moggi, N., Morganti, S., Mosteiro, P. J., Napolitano, T., Nones, C., Norman, E. B., Nucciotti, A., O’Donnell, T., Orio, F., Ouellet, J. L., Pagliarone, C. E., Pallavicini, M., Palmieri, V., Pattavina, L., Pavan, M., Pessina, G., Pettinacci, V., Piperno, G., Pira, C., Pirro, S., Pozzi, S., Previtali, E., Rosenfeld, C.
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container_issue 9
container_start_page
container_title The European physical journal. C, Particles and fields
container_volume 79
creator Alduino, C.
Alfonso, K.
Artusa, D. R.
Avignone III, F. T.
Azzolini, O.
Banks, T. I.
Bari, G.
Beeman, J. W.
Bellini, F.
Bersani, A.
Biassoni, M.
Brofferio, C.
Bucci, C.
Camacho, A.
Caminata, A.
Canonica, L.
Cao, X. G.
Capelli, S.
Cappelli, L.
Carbone, L.
Cardani, L.
Carniti, P.
Casali, N.
Cassina, L.
Chiesa, D.
Chott, N.
Clemenza, M.
Copello, S.
Cosmelli, C.
Cremonesi, O.
Creswick, R. J.
Cushman, J. S.
D’Addabbo, A.
Dafinei, I.
Davis, C. J.
Dell’Oro, S.
Deninno, M. M.
Domizio, S. Di
Vacri, M. L. Di
Drobizhev, A.
Fang, D. Q.
Faverzani, M.
Feintzeig, J.
Fernandes, G.
Ferri, E.
Ferroni, F.
Fiorini, E.
Franceschi, M. A.
Freedman, S. J.
Fujikawa, B. K.
Giachero, A.
Gironi, L.
Giuliani, A.
Gladstone, L.
Gorla, P.
Gotti, C.
Gutierrez, T. D.
Haller, E. E.
Han, K.
Hansen, E.
Heeger, K. M.
Hennings-Yeomans, R.
Hickerson, K. P.
Huang, H. Z.
Kadel, R.
Keppel, G.
Kolomensky, Yu. G.
Leder, A.
Ligi, C.
Lim, K. E.
Liu, X.
Ma, Y. G.
Maino, M.
Marini, L.
Martinez, M.
Maruyama, R. H.
Mei, Y.
Moggi, N.
Morganti, S.
Mosteiro, P. J.
Napolitano, T.
Nones, C.
Norman, E. B.
Nucciotti, A.
O’Donnell, T.
Orio, F.
Ouellet, J. L.
Pagliarone, C. E.
Pallavicini, M.
Palmieri, V.
Pattavina, L.
Pavan, M.
Pessina, G.
Pettinacci, V.
Piperno, G.
Pira, C.
Pirro, S.
Pozzi, S.
Previtali, E.
Rosenfeld, C.
description We report on a search for double beta decay of $$^{130}\hbox {Te}$$ 130 Te to the first $$0^{+}$$ 0 + excited state of $$^{130}\hbox {Xe}$$ 130 Xe using a $$9.8\,\hbox {kg}\cdot \hbox {yr}$$ 9.8 kg · yr exposure of $$^{130}\hbox {Te}$$ 130 Te collected with the CUORE-0 experiment. In this work we exploit different topologies of coincident events to search for both the neutrinoless and two-neutrino double beta decay modes. We find no evidence for either mode and place lower bounds on the half-lives: $$T^{0\nu }_{0^+_1}>7.9\cdot 10^{23}\hbox {yr}$$ T 0 1 + 0 ν > 7.9 · 10 23 yr and $$T^{2\nu }_{0^+_1}>2.4\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν > 2.4 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ). Combining our results with those obtained by the CUORICINO experiment, we achieve the most stringent constraints available for these processes: $$T^{0\nu }_{0^+_1}>1.4\cdot 10^{24}\hbox {yr}$$ T 0 1 + 0 ν > 1.4 · 10 24 yr and $$T^{2\nu }_{0^+_1}>2.5\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν > 2.5 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ).
doi_str_mv 10.1140/epjc/s10052-019-7275-5
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R. ; Avignone III, F. T. ; Azzolini, O. ; Banks, T. I. ; Bari, G. ; Beeman, J. W. ; Bellini, F. ; Bersani, A. ; Biassoni, M. ; Brofferio, C. ; Bucci, C. ; Camacho, A. ; Caminata, A. ; Canonica, L. ; Cao, X. G. ; Capelli, S. ; Cappelli, L. ; Carbone, L. ; Cardani, L. ; Carniti, P. ; Casali, N. ; Cassina, L. ; Chiesa, D. ; Chott, N. ; Clemenza, M. ; Copello, S. ; Cosmelli, C. ; Cremonesi, O. ; Creswick, R. J. ; Cushman, J. S. ; D’Addabbo, A. ; Dafinei, I. ; Davis, C. J. ; Dell’Oro, S. ; Deninno, M. M. ; Domizio, S. Di ; Vacri, M. L. Di ; Drobizhev, A. ; Fang, D. Q. ; Faverzani, M. ; Feintzeig, J. ; Fernandes, G. ; Ferri, E. ; Ferroni, F. ; Fiorini, E. ; Franceschi, M. A. ; Freedman, S. J. ; Fujikawa, B. K. ; Giachero, A. ; Gironi, L. ; Giuliani, A. ; Gladstone, L. ; Gorla, P. ; Gotti, C. ; Gutierrez, T. D. ; Haller, E. E. ; Han, K. ; Hansen, E. ; Heeger, K. M. ; Hennings-Yeomans, R. ; Hickerson, K. P. ; Huang, H. Z. ; Kadel, R. ; Keppel, G. ; Kolomensky, Yu. 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S. ; D’Addabbo, A. ; Dafinei, I. ; Davis, C. J. ; Dell’Oro, S. ; Deninno, M. M. ; Domizio, S. Di ; Vacri, M. L. Di ; Drobizhev, A. ; Fang, D. Q. ; Faverzani, M. ; Feintzeig, J. ; Fernandes, G. ; Ferri, E. ; Ferroni, F. ; Fiorini, E. ; Franceschi, M. A. ; Freedman, S. J. ; Fujikawa, B. K. ; Giachero, A. ; Gironi, L. ; Giuliani, A. ; Gladstone, L. ; Gorla, P. ; Gotti, C. ; Gutierrez, T. D. ; Haller, E. E. ; Han, K. ; Hansen, E. ; Heeger, K. M. ; Hennings-Yeomans, R. ; Hickerson, K. P. ; Huang, H. Z. ; Kadel, R. ; Keppel, G. ; Kolomensky, Yu. G. ; Leder, A. ; Ligi, C. ; Lim, K. E. ; Liu, X. ; Ma, Y. G. ; Maino, M. ; Marini, L. ; Martinez, M. ; Maruyama, R. H. ; Mei, Y. ; Moggi, N. ; Morganti, S. ; Mosteiro, P. J. ; Napolitano, T. ; Nones, C. ; Norman, E. B. ; Nucciotti, A. ; O’Donnell, T. ; Orio, F. ; Ouellet, J. L. ; Pagliarone, C. E. ; Pallavicini, M. ; Palmieri, V. ; Pattavina, L. ; Pavan, M. ; Pessina, G. ; Pettinacci, V. ; Piperno, G. ; Pira, C. ; Pirro, S. ; Pozzi, S. ; Previtali, E. ; Rosenfeld, C. ; Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States) ; Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)</creatorcontrib><description>We report on a search for double beta decay of $$^{130}\hbox {Te}$$ 130 Te to the first $$0^{+}$$ 0 + excited state of $$^{130}\hbox {Xe}$$ 130 Xe using a $$9.8\,\hbox {kg}\cdot \hbox {yr}$$ 9.8 kg · yr exposure of $$^{130}\hbox {Te}$$ 130 Te collected with the CUORE-0 experiment. In this work we exploit different topologies of coincident events to search for both the neutrinoless and two-neutrino double beta decay modes. We find no evidence for either mode and place lower bounds on the half-lives: $$T^{0\nu }_{0^+_1}&gt;7.9\cdot 10^{23}\hbox {yr}$$ T 0 1 + 0 ν &gt; 7.9 · 10 23 yr and $$T^{2\nu }_{0^+_1}&gt;2.4\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.4 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ). Combining our results with those obtained by the CUORICINO experiment, we achieve the most stringent constraints available for these processes: $$T^{0\nu }_{0^+_1}&gt;1.4\cdot 10^{24}\hbox {yr}$$ T 0 1 + 0 ν &gt; 1.4 · 10 24 yr and $$T^{2\nu }_{0^+_1}&gt;2.5\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.5 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ).</description><identifier>ISSN: 1434-6044</identifier><identifier>EISSN: 1434-6052</identifier><identifier>DOI: 10.1140/epjc/s10052-019-7275-5</identifier><language>eng</language><publisher>United States: Springer Verlag (Germany)</publisher><subject>Instrumentation and Detectors ; Nuclear Experiment ; Physics ; PHYSICS OF ELEMENTARY PARTICLES AND FIELDS ; Physics, Nuclear science and engineering, Physics - Nuclear physics and radiation physics, Physics - Physics of elementary particles and fields</subject><ispartof>The European physical journal. 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(LBNL), Berkeley, CA (United States)</creatorcontrib><title>Double-beta decay of $$^{130}\hbox {Te}$$ to the first $$0^+$$ excited state of $$^{130}\hbox {Xe}$$ with CUORE-0</title><title>The European physical journal. C, Particles and fields</title><description>We report on a search for double beta decay of $$^{130}\hbox {Te}$$ 130 Te to the first $$0^{+}$$ 0 + excited state of $$^{130}\hbox {Xe}$$ 130 Xe using a $$9.8\,\hbox {kg}\cdot \hbox {yr}$$ 9.8 kg · yr exposure of $$^{130}\hbox {Te}$$ 130 Te collected with the CUORE-0 experiment. In this work we exploit different topologies of coincident events to search for both the neutrinoless and two-neutrino double beta decay modes. We find no evidence for either mode and place lower bounds on the half-lives: $$T^{0\nu }_{0^+_1}&gt;7.9\cdot 10^{23}\hbox {yr}$$ T 0 1 + 0 ν &gt; 7.9 · 10 23 yr and $$T^{2\nu }_{0^+_1}&gt;2.4\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.4 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ). Combining our results with those obtained by the CUORICINO experiment, we achieve the most stringent constraints available for these processes: $$T^{0\nu }_{0^+_1}&gt;1.4\cdot 10^{24}\hbox {yr}$$ T 0 1 + 0 ν &gt; 1.4 · 10 24 yr and $$T^{2\nu }_{0^+_1}&gt;2.5\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.5 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ).</description><subject>Instrumentation and Detectors</subject><subject>Nuclear Experiment</subject><subject>Physics</subject><subject>PHYSICS OF ELEMENTARY PARTICLES AND FIELDS</subject><subject>Physics, Nuclear science and engineering, Physics - Nuclear physics and radiation physics, Physics - Physics of elementary particles and fields</subject><issn>1434-6044</issn><issn>1434-6052</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><recordid>eNptkU9Lw0AQxYMoWKtfQRbJRWTtbHY3f46lVisUCtKCB-my2U5ISm1qdtWW0u9uYqQnTzM8fm94zPO8awb3jAno4WZpepYByIACS2gURJLKE6_DBBc0rOXT4y7EuXdh7RIAAgFxx_t4KD_TFdIUnSYLNHpHyoz4_nzPOBze8rTckv0UD75PXElcjiQrKutqAuZ3tYhbUzhcEOu0w3-sr7_W78LlZDCbvAwpXHpnmV5ZvPqbXW_2OJwORnQ8eXoe9MfUBJBIahaJ0DJloFOQccyilGHGIYwMYlJHD0PDpeSGaxGKKJaIXOpMay7BcIhj3vVu2ruldYWyTUyTm3K9RuMUk1EQC6ih2xbK9UptquJdVztV6kKN-mPVaPVDZZBw9sVqNmxZU5XWVpgdDQxU04RqmlBtE41RNU0oyX8AwKR32Q</recordid><startdate>20190924</startdate><enddate>20190924</enddate><creator>Alduino, C.</creator><creator>Alfonso, K.</creator><creator>Artusa, D. R.</creator><creator>Avignone III, F. T.</creator><creator>Azzolini, O.</creator><creator>Banks, T. I.</creator><creator>Bari, G.</creator><creator>Beeman, J. W.</creator><creator>Bellini, F.</creator><creator>Bersani, A.</creator><creator>Biassoni, M.</creator><creator>Brofferio, C.</creator><creator>Bucci, C.</creator><creator>Camacho, A.</creator><creator>Caminata, A.</creator><creator>Canonica, L.</creator><creator>Cao, X. G.</creator><creator>Capelli, S.</creator><creator>Cappelli, L.</creator><creator>Carbone, L.</creator><creator>Cardani, L.</creator><creator>Carniti, P.</creator><creator>Casali, N.</creator><creator>Cassina, L.</creator><creator>Chiesa, D.</creator><creator>Chott, N.</creator><creator>Clemenza, M.</creator><creator>Copello, S.</creator><creator>Cosmelli, C.</creator><creator>Cremonesi, O.</creator><creator>Creswick, R. J.</creator><creator>Cushman, J. S.</creator><creator>D’Addabbo, A.</creator><creator>Dafinei, I.</creator><creator>Davis, C. J.</creator><creator>Dell’Oro, S.</creator><creator>Deninno, M. M.</creator><creator>Domizio, S. Di</creator><creator>Vacri, M. L. Di</creator><creator>Drobizhev, A.</creator><creator>Fang, D. Q.</creator><creator>Faverzani, M.</creator><creator>Feintzeig, J.</creator><creator>Fernandes, G.</creator><creator>Ferri, E.</creator><creator>Ferroni, F.</creator><creator>Fiorini, E.</creator><creator>Franceschi, M. A.</creator><creator>Freedman, S. J.</creator><creator>Fujikawa, B. K.</creator><creator>Giachero, A.</creator><creator>Gironi, L.</creator><creator>Giuliani, A.</creator><creator>Gladstone, L.</creator><creator>Gorla, P.</creator><creator>Gotti, C.</creator><creator>Gutierrez, T. D.</creator><creator>Haller, E. E.</creator><creator>Han, K.</creator><creator>Hansen, E.</creator><creator>Heeger, K. M.</creator><creator>Hennings-Yeomans, R.</creator><creator>Hickerson, K. P.</creator><creator>Huang, H. 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E.</creator><creator>Pallavicini, M.</creator><creator>Palmieri, V.</creator><creator>Pattavina, L.</creator><creator>Pavan, M.</creator><creator>Pessina, G.</creator><creator>Pettinacci, V.</creator><creator>Piperno, G.</creator><creator>Pira, C.</creator><creator>Pirro, S.</creator><creator>Pozzi, S.</creator><creator>Previtali, E.</creator><creator>Rosenfeld, C.</creator><general>Springer Verlag (Germany)</general><general>Springer</general><scope>AAYXX</scope><scope>CITATION</scope><scope>1XC</scope><scope>OIOZB</scope><scope>OTOTI</scope><orcidid>https://orcid.org/0000-0001-7309-3023</orcidid><orcidid>https://orcid.org/0000-0002-5394-6890</orcidid></search><sort><creationdate>20190924</creationdate><title>Double-beta decay of $$^{130}\hbox {Te}$$ to the first $$0^+$$ excited state of $$^{130}\hbox {Xe}$$ with CUORE-0</title><author>Alduino, C. ; Alfonso, K. ; Artusa, D. R. ; Avignone III, F. T. ; Azzolini, O. ; Banks, T. I. ; Bari, G. ; Beeman, J. W. ; Bellini, F. ; Bersani, A. ; Biassoni, M. ; Brofferio, C. ; Bucci, C. ; Camacho, A. ; Caminata, A. ; Canonica, L. ; Cao, X. G. ; Capelli, S. ; Cappelli, L. ; Carbone, L. ; Cardani, L. ; Carniti, P. ; Casali, N. ; Cassina, L. ; Chiesa, D. ; Chott, N. ; Clemenza, M. ; Copello, S. ; Cosmelli, C. ; Cremonesi, O. ; Creswick, R. J. ; Cushman, J. S. ; D’Addabbo, A. ; Dafinei, I. ; Davis, C. J. ; Dell’Oro, S. ; Deninno, M. M. ; Domizio, S. Di ; Vacri, M. L. Di ; Drobizhev, A. ; Fang, D. Q. ; Faverzani, M. ; Feintzeig, J. ; Fernandes, G. ; Ferri, E. ; Ferroni, F. ; Fiorini, E. ; Franceschi, M. A. ; Freedman, S. J. ; Fujikawa, B. K. ; Giachero, A. ; Gironi, L. ; Giuliani, A. ; Gladstone, L. ; Gorla, P. ; Gotti, C. ; Gutierrez, T. D. ; Haller, E. E. ; Han, K. ; Hansen, E. ; Heeger, K. M. ; Hennings-Yeomans, R. ; Hickerson, K. P. ; Huang, H. Z. ; Kadel, R. ; Keppel, G. ; Kolomensky, Yu. G. ; Leder, A. ; Ligi, C. ; Lim, K. E. ; Liu, X. ; Ma, Y. G. ; Maino, M. ; Marini, L. ; Martinez, M. ; Maruyama, R. H. ; Mei, Y. ; Moggi, N. ; Morganti, S. ; Mosteiro, P. J. ; Napolitano, T. ; Nones, C. ; Norman, E. B. ; Nucciotti, A. ; O’Donnell, T. ; Orio, F. ; Ouellet, J. L. ; Pagliarone, C. E. ; Pallavicini, M. ; Palmieri, V. ; Pattavina, L. ; Pavan, M. ; Pessina, G. ; Pettinacci, V. ; Piperno, G. ; Pira, C. ; Pirro, S. ; Pozzi, S. ; Previtali, E. ; Rosenfeld, C.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c2095-cd94a5b10ab058817b1ef3067cee940866c3553c3a464785ee35afaa350c30883</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2019</creationdate><topic>Instrumentation and Detectors</topic><topic>Nuclear Experiment</topic><topic>Physics</topic><topic>PHYSICS OF ELEMENTARY PARTICLES AND FIELDS</topic><topic>Physics, Nuclear science and engineering, Physics - Nuclear physics and radiation physics, Physics - Physics of elementary particles and fields</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Alduino, C.</creatorcontrib><creatorcontrib>Alfonso, K.</creatorcontrib><creatorcontrib>Artusa, D. R.</creatorcontrib><creatorcontrib>Avignone III, F. T.</creatorcontrib><creatorcontrib>Azzolini, O.</creatorcontrib><creatorcontrib>Banks, T. I.</creatorcontrib><creatorcontrib>Bari, G.</creatorcontrib><creatorcontrib>Beeman, J. W.</creatorcontrib><creatorcontrib>Bellini, F.</creatorcontrib><creatorcontrib>Bersani, A.</creatorcontrib><creatorcontrib>Biassoni, M.</creatorcontrib><creatorcontrib>Brofferio, C.</creatorcontrib><creatorcontrib>Bucci, C.</creatorcontrib><creatorcontrib>Camacho, A.</creatorcontrib><creatorcontrib>Caminata, A.</creatorcontrib><creatorcontrib>Canonica, L.</creatorcontrib><creatorcontrib>Cao, X. 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M.</creatorcontrib><creatorcontrib>Hennings-Yeomans, R.</creatorcontrib><creatorcontrib>Hickerson, K. P.</creatorcontrib><creatorcontrib>Huang, H. Z.</creatorcontrib><creatorcontrib>Kadel, R.</creatorcontrib><creatorcontrib>Keppel, G.</creatorcontrib><creatorcontrib>Kolomensky, Yu. G.</creatorcontrib><creatorcontrib>Leder, A.</creatorcontrib><creatorcontrib>Ligi, C.</creatorcontrib><creatorcontrib>Lim, K. E.</creatorcontrib><creatorcontrib>Liu, X.</creatorcontrib><creatorcontrib>Ma, Y. G.</creatorcontrib><creatorcontrib>Maino, M.</creatorcontrib><creatorcontrib>Marini, L.</creatorcontrib><creatorcontrib>Martinez, M.</creatorcontrib><creatorcontrib>Maruyama, R. H.</creatorcontrib><creatorcontrib>Mei, Y.</creatorcontrib><creatorcontrib>Moggi, N.</creatorcontrib><creatorcontrib>Morganti, S.</creatorcontrib><creatorcontrib>Mosteiro, P. J.</creatorcontrib><creatorcontrib>Napolitano, T.</creatorcontrib><creatorcontrib>Nones, C.</creatorcontrib><creatorcontrib>Norman, E. B.</creatorcontrib><creatorcontrib>Nucciotti, A.</creatorcontrib><creatorcontrib>O’Donnell, T.</creatorcontrib><creatorcontrib>Orio, F.</creatorcontrib><creatorcontrib>Ouellet, J. L.</creatorcontrib><creatorcontrib>Pagliarone, C. E.</creatorcontrib><creatorcontrib>Pallavicini, M.</creatorcontrib><creatorcontrib>Palmieri, V.</creatorcontrib><creatorcontrib>Pattavina, L.</creatorcontrib><creatorcontrib>Pavan, M.</creatorcontrib><creatorcontrib>Pessina, G.</creatorcontrib><creatorcontrib>Pettinacci, V.</creatorcontrib><creatorcontrib>Piperno, G.</creatorcontrib><creatorcontrib>Pira, C.</creatorcontrib><creatorcontrib>Pirro, S.</creatorcontrib><creatorcontrib>Pozzi, S.</creatorcontrib><creatorcontrib>Previtali, E.</creatorcontrib><creatorcontrib>Rosenfeld, C.</creatorcontrib><creatorcontrib>Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States)</creatorcontrib><creatorcontrib>Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)</creatorcontrib><collection>CrossRef</collection><collection>Hyper Article en Ligne (HAL)</collection><collection>OSTI.GOV - Hybrid</collection><collection>OSTI.GOV</collection><jtitle>The European physical journal. C, Particles and fields</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Alduino, C.</au><au>Alfonso, K.</au><au>Artusa, D. R.</au><au>Avignone III, F. T.</au><au>Azzolini, O.</au><au>Banks, T. I.</au><au>Bari, G.</au><au>Beeman, J. W.</au><au>Bellini, F.</au><au>Bersani, A.</au><au>Biassoni, M.</au><au>Brofferio, C.</au><au>Bucci, C.</au><au>Camacho, A.</au><au>Caminata, A.</au><au>Canonica, L.</au><au>Cao, X. G.</au><au>Capelli, S.</au><au>Cappelli, L.</au><au>Carbone, L.</au><au>Cardani, L.</au><au>Carniti, P.</au><au>Casali, N.</au><au>Cassina, L.</au><au>Chiesa, D.</au><au>Chott, N.</au><au>Clemenza, M.</au><au>Copello, S.</au><au>Cosmelli, C.</au><au>Cremonesi, O.</au><au>Creswick, R. J.</au><au>Cushman, J. S.</au><au>D’Addabbo, A.</au><au>Dafinei, I.</au><au>Davis, C. J.</au><au>Dell’Oro, S.</au><au>Deninno, M. M.</au><au>Domizio, S. Di</au><au>Vacri, M. L. Di</au><au>Drobizhev, A.</au><au>Fang, D. Q.</au><au>Faverzani, M.</au><au>Feintzeig, J.</au><au>Fernandes, G.</au><au>Ferri, E.</au><au>Ferroni, F.</au><au>Fiorini, E.</au><au>Franceschi, M. A.</au><au>Freedman, S. J.</au><au>Fujikawa, B. K.</au><au>Giachero, A.</au><au>Gironi, L.</au><au>Giuliani, A.</au><au>Gladstone, L.</au><au>Gorla, P.</au><au>Gotti, C.</au><au>Gutierrez, T. D.</au><au>Haller, E. E.</au><au>Han, K.</au><au>Hansen, E.</au><au>Heeger, K. M.</au><au>Hennings-Yeomans, R.</au><au>Hickerson, K. P.</au><au>Huang, H. Z.</au><au>Kadel, R.</au><au>Keppel, G.</au><au>Kolomensky, Yu. G.</au><au>Leder, A.</au><au>Ligi, C.</au><au>Lim, K. E.</au><au>Liu, X.</au><au>Ma, Y. G.</au><au>Maino, M.</au><au>Marini, L.</au><au>Martinez, M.</au><au>Maruyama, R. H.</au><au>Mei, Y.</au><au>Moggi, N.</au><au>Morganti, S.</au><au>Mosteiro, P. J.</au><au>Napolitano, T.</au><au>Nones, C.</au><au>Norman, E. B.</au><au>Nucciotti, A.</au><au>O’Donnell, T.</au><au>Orio, F.</au><au>Ouellet, J. L.</au><au>Pagliarone, C. E.</au><au>Pallavicini, M.</au><au>Palmieri, V.</au><au>Pattavina, L.</au><au>Pavan, M.</au><au>Pessina, G.</au><au>Pettinacci, V.</au><au>Piperno, G.</au><au>Pira, C.</au><au>Pirro, S.</au><au>Pozzi, S.</au><au>Previtali, E.</au><au>Rosenfeld, C.</au><aucorp>Lawrence Livermore National Lab. (LLNL), Livermore, CA (United States)</aucorp><aucorp>Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)</aucorp><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Double-beta decay of $$^{130}\hbox {Te}$$ to the first $$0^+$$ excited state of $$^{130}\hbox {Xe}$$ with CUORE-0</atitle><jtitle>The European physical journal. C, Particles and fields</jtitle><date>2019-09-24</date><risdate>2019</risdate><volume>79</volume><issue>9</issue><artnum>795</artnum><issn>1434-6044</issn><eissn>1434-6052</eissn><abstract>We report on a search for double beta decay of $$^{130}\hbox {Te}$$ 130 Te to the first $$0^{+}$$ 0 + excited state of $$^{130}\hbox {Xe}$$ 130 Xe using a $$9.8\,\hbox {kg}\cdot \hbox {yr}$$ 9.8 kg · yr exposure of $$^{130}\hbox {Te}$$ 130 Te collected with the CUORE-0 experiment. In this work we exploit different topologies of coincident events to search for both the neutrinoless and two-neutrino double beta decay modes. We find no evidence for either mode and place lower bounds on the half-lives: $$T^{0\nu }_{0^+_1}&gt;7.9\cdot 10^{23}\hbox {yr}$$ T 0 1 + 0 ν &gt; 7.9 · 10 23 yr and $$T^{2\nu }_{0^+_1}&gt;2.4\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.4 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ). Combining our results with those obtained by the CUORICINO experiment, we achieve the most stringent constraints available for these processes: $$T^{0\nu }_{0^+_1}&gt;1.4\cdot 10^{24}\hbox {yr}$$ T 0 1 + 0 ν &gt; 1.4 · 10 24 yr and $$T^{2\nu }_{0^+_1}&gt;2.5\cdot 10^{23}\hbox {yr}$$ T 0 1 + 2 ν &gt; 2.5 · 10 23 yr ( $$90\%\,\hbox {CL}$$ 90 % CL ).</abstract><cop>United States</cop><pub>Springer Verlag (Germany)</pub><doi>10.1140/epjc/s10052-019-7275-5</doi><orcidid>https://orcid.org/0000-0001-7309-3023</orcidid><orcidid>https://orcid.org/0000-0002-5394-6890</orcidid><oa>free_for_read</oa></addata></record>
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subjects Instrumentation and Detectors
Nuclear Experiment
Physics
PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
Physics, Nuclear science and engineering, Physics - Nuclear physics and radiation physics, Physics - Physics of elementary particles and fields
title Double-beta decay of $$^{130}\hbox {Te}$$ to the first $$0^+$$ excited state of $$^{130}\hbox {Xe}$$ with CUORE-0
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