First Results from CUORE: A Search for Lepton Number Violation via 0νββ Decay of ^{130}Te.

C. Alduino, F. Alessandria, K. Alfonso, E. Andreotti, C. Arnaboldi,F. T. Avignone,O. Azzolini, M. Balata,I. C. Bandac, T. I. Banks,G. Bari, M. Barucci,Jeffrey W. Beeman,F. Bellini,Giovanni Benato, A. Bersani, D. Biare, M. Biassoni, F. Bragazzi,A. Branca, C. Brofferio, A. Bryant, A. Buccheri,C. Bucci, C. Bulfon, A. Camacho,A. Caminata,Lucia Canonica,Xi-Guang Cao,Silvia Capelli, M. Capodiferro, Luigi Cappelli,Laura Cardani, M. Cariello,Paolo Carniti, M. Carrettoni,N. Casali, L. Cassina, R. Cereseto, G. Ceruti, A. Chiarini,Davide Chiesa, N. Chott,Massimiliano Clemenza, D. Conventi,S. Copello,Carlo Cosmelli,Oliviero Cremonesi, C. Crescentini, R. J. Creswick, Jeremy S. Cushman,A. D'Addabbo, D. D'Aguanno, I. Dafinei,Vladimir Datskov,C. J. Davis,F. Del Corso,Stefano Dell'Oro, M. M. Deninno,S. Di Domizio,M. L. Di Vacri, L. Di Paolo, A. Drobizhev, Larissa M. Ejzak, R. Faccini, D. Q. Fang,M. Faverzani,Emanuele Ferri, F. Ferroni, E. Fiorini,M. A. Franceschi, Stuart J. Freedman,B. K. Fujikawa, R. Gaigher,A. Giachero,L. Gironi,A. Giuliani, L. Gladstone, J. Goett,P. Gorla,Claudio Gotti, C. Guandalini, M. Guerzoni, T. D. Gutierrez,Eugene E. Haller,Ke Han, E. V. Hansen,K. M. Heeger, R. Hennings-Yeomans,Kevin Hickerson,H. Z. Huang, M. Iannone, L. Ioannucci,R. W. Kadel,G. Keppel, L. Kogler,Yu. G. Kolomensky, A. Leder,Carlo Ligi, K. E. Lim

Physical Review Letters(2018)

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摘要
The CUORE experiment, a ton-scale cryogenic bolometer array, recently began operation at the Laboratori Nazionali del Gran Sasso in Italy. The array represents a significant advancement in this technology, and in this work we apply it for the first time to a high-sensitivity search for a lepton-number-violating process: ^{130}Te neutrinoless double-beta decay. Examining a total TeO_{2} exposure of 86.3 kg yr, characterized by an effective energy resolution of (7.7±0.5)  keV FWHM and a background in the region of interest of (0.014±0.002)  counts/(keV kg yr), we find no evidence for neutrinoless double-beta decay. Including systematic uncertainties, we place a lower limit on the decay half-life of T_{1/2}^{0ν}(^{130}Te)>1.3×10^{25}  yr (90% C.L.); the median statistical sensitivity of this search is 7.0×10^{24}  yr. Combining this result with those of two earlier experiments, Cuoricino and CUORE-0, we find T_{1/2}^{0ν}(^{130}Te)>1.5×10^{25}  yr (90% C.L.), which is the most stringent limit to date on this decay. Interpreting this result as a limit on the effective Majorana neutrino mass, we find m_{ββ}<(110-520)  meV, where the range reflects the nuclear matrix element estimates employed.
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