Measurement of the double-beta decay half-life and search for the neutrinoless double-beta decay of $^{48}{\rm Ca}$ with the NEMO-3 detector

NEMO- Collaboration, :, R. Arnold,C. Augier, A. M. Bakalyarov, J. D. Baker, A. S. Barabash, A. Basharina-Freshville, S. Blondel, S. Blot, M. Bongrand, V. Brudanin, J. Busto, A. J. Caffrey, S. Calvez,M. Cascella, C. Cerna, J. P. Cesar, A. Chapon,E. Chauveau,A. Chopra, 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,R. Hodák, A. Huber, P. Hubert,C. Hugon, S. Jullian, A. Klimenko, O. Kochetov,S. I. Konovalov,V. Kovalenko,D. Lalanne, K. Lang, V. I. Lebedev, Y. Lemière,T. Le Noblet,Z. Liptak, X. R. Liu,P. Loaiza,G. Lutter, F. Mamedov, C. Marquet, F. Mauger, B. Morgan,J. Mott,I. Nemchenok, M. Nomachi, F. Nova, F. Nowacki,H. Ohsumi,R. B. Pahlka,F. Perrot, F. Piquemal,P. Povinec, P. Přidal,Y. A. Ramachers,A. Remoto, J. L. Reyss, B. Richards,C. L. Riddle,E. Rukhadze,N. I. Rukhadze, R. Saakyan, R. Salazar,X. Sarazin,Yu. Shitov, L. Simard,F. Šimkovic, A. Smetana, K. Smolek, A. Smolnikov,S. Söldner-Rembold, B. Soulé,I. Štekl,J. Suhonen, C. S. Sutton,G. Szklarz, J. Thomas,V. Timkin, S. Torre,Vl. I. Tretyak,V. I. Tretyak,V. I. Umatov, I. Vanushin,C. Vilela,V. Vorobel,D. Waters, S. V. Zhukov, A. Žukauskas

arxiv(2016)

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摘要
The NEMO-3 experiment at the Modane Underground Laboratory has investigated the double-$\beta$ decay of $^{48}{\rm Ca}$. Using $5.25$ yr of data recorded with a $6.99\,{\rm g}$ sample of $^{48}{\rm Ca}$, approximately $150$ double-$\beta$ decay candidate events have been selected with a signal-to-background ratio greater than $3$. The half-life for the two-neutrino double-$\beta$ decay of $^{48}{\rm Ca}$ has been measured to be $T^{2\nu}_{1/2}\,=\,[6.4\, ^{+0.7}_{-0.6}{\rm (stat.)} \, ^{+1.2}_{-0.9}{\rm (syst.)}] \times 10^{19}\,{\rm yr}$. A search for neutrinoless double-$\beta$ decay of $^{48}{\rm Ca}$ yields a null result and a corresponding lower limit on the half-life is found to be $T^{0\nu}_{1/2} > 2.0 \times 10^{22}\,{\rm yr}$ at $90\%$ confidence level, translating into an upper limit on the effective Majorana neutrino mass of $< m_{\beta\beta} > < 6.0 - 26$ ${\rm eV}$, with the range reflecting different nuclear matrix element calculations. Limits are also set on models involving Majoron emission and right-handed currents.
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