Neutrinoless double beta decay and neutrino mass

被引:183
作者
Vergados, J. D. [1 ,2 ,3 ]
Ejiri, H. [4 ,5 ]
Simkovic, F. [6 ,7 ,8 ]
机构
[1] Univ Adelaide, Dept Phys, ARC Ctr Excellence Particle Phys CoEPP, Adelaide, SA 5005, Australia
[2] KAIST Univ, IBS, CAPP, Daejeon 305701, South Korea
[3] Tech Educ Inst, Board Trustees, Kozani, Greece
[4] Osaka Univ, RCNP, Osaka 5670047, Japan
[5] Czech Tech Univ, Nucl Sci, Prague, Czech Republic
[6] JINR, Theoret Phys Lab, Dubna 141980, Moscow Region, Russia
[7] Comenius Univ, Dept Nucl Phys & Biophys, Mlynska Dolina F1, SK-84215 Bratislava, Slovakia
[8] Czech Tech Univ, Prague 12800, Czech Republic
来源
INTERNATIONAL JOURNAL OF MODERN PHYSICS E | 2016年 / 25卷 / 11期
关键词
Majorana neutrino; neutrino mass; double data decay; nuclear matrix element; NUCLEAR-MATRIX-ELEMENTS; DOUBLE-ELECTRON-CAPTURE; QUASI-PARTICLE RPA; SHELL-MODEL; MAJORANA NEUTRINOS; LEPTON-NUMBER; 2-NU-BETA-BETA DECAY; EXCITED-STATES; MIXINGS STATUS; ECEC PROCESSES;
D O I
10.1142/S0218301316300071
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
The observation of neutrinoless double beta decay (DBD) will have important consequences. First it will signal that lepton number is not conserved and the neutrinos are Majorana particles. Second, it represents our best hope for determining the absolute neutrino mass scale at the level of a few tens of meV. To achieve the last goal, however, certain hurdles have to be overcome involving particle, nuclear and experimental physics. Particle physics is important since it provides the mechanisms for neutrinoless DBD. In this review, we emphasize the light neutrino mass mechanism. Nuclear physics is important for extracting the useful information from the data. One must accurately evaluate the relevant nuclear matrix elements (NMEs), a formidable task. To this end, we review the recently developed sophisticated nuclear structure approaches, employing different methods and techniques of calculation. We also examine the question of quenching of the axial vector coupling constant, which may have important consequences on the size of the NMEs. From an experimental point of view it is challenging, since the life times are extremely long and one has to fight against formidable backgrounds. One needs large isotopically enriched sources and detectors with good energy resolution and very low background.
引用
收藏
页数:59
相关论文
共 295 条
[71]   SUPPRESSION OF THE 2-NEUTRINO DOUBLE BETA-DECAY [J].
CIVITARESE, O ;
FAESSLER, A ;
TOMODA, T .
PHYSICS LETTERS B, 1987, 194 (01) :11-14
[72]   2-NEUTRINO DOUBLE-BETA DECAY TO EXCITED ONE-PHONON AND 2-PHONON STATES [J].
CIVITARESE, O ;
SUHONEN, J .
NUCLEAR PHYSICS A, 1994, 575 (02) :251-268
[73]   Neutrino constraints: what large-scale structure and CMB data are telling us? [J].
Costanzi, Matteo ;
Sartoris, Barbara ;
Viel, Matteo ;
Borgani, Stefano .
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2014, (10)
[74]   Status of the MAJORANA DEMONSTRATOR [J].
Cuesta, C. ;
Abgrall, N. ;
Arnquist, I. J. ;
Avignone, F. T., III ;
Baldenegro-Baffera, C. X. ;
Barabash, A. S. ;
Bertrand, F. E. ;
Bradley, A. W. ;
Brudanin, V. ;
Busch, M. ;
Buuck, M. ;
Byram, D. ;
Caldwell, A. S. ;
Chan, Y. -D. ;
Christofferson, C. D. ;
Chu, P. -H. ;
Detwiler, J. A. ;
Efremenko, Yu. ;
Ejiri, H. ;
Elliott, S. R. ;
Galindo-Uribarrie, A. ;
Gilliss, T. ;
Giovanetti, G. K. ;
Goett, J. ;
Green, M. P. ;
Gruszko, J. ;
Guinn, I. S. ;
Guiseppe, V. E. ;
Henning, R. ;
Hoppe, E. W. ;
Howard, S. ;
Howe, M. A. ;
Jasinski, B. R. ;
Keeter, K. J. ;
Kidd, M. F. ;
Konovalov, S. I. ;
Kouzes, R. T. ;
LaFerriere, B. D. ;
Leon, J. ;
MacMullin, J. ;
Martin, R. D. ;
Massarczyk, R. ;
Meijer, S. J. ;
Mertens, S. ;
Orrell, J. L. ;
O'Shaughnessy, C. ;
Poon, A. W. P. ;
Radford, D. C. ;
Rager, J. ;
Rielage, K. .
WORKSHOP ON CALCULATION OF DOUBLE-BETA-DECAY MATRIX ELEMENTS (MEDEX15), 2015, 1686
[75]   Search for double beta decay of 116Cd with enriched 116CdWO4 crystal scintillators (Aurora experiment) [J].
Danevich, F. A. ;
Barabash, A. S. ;
Belli, P. ;
Bernabei, R. ;
Cappella, F. ;
Caracciolo, V. ;
Cerulli, R. ;
Chernyak, D. M. ;
d'Angelo, S. ;
Incicchitti, A. ;
Kobychev, V. V. ;
Konovalov, S. I. ;
Laubenstein, M. ;
Mokina, V. M. ;
Poda, D. V. ;
Polischuk, G. ;
Shlegel, V. N. ;
Tretyak, V. I. ;
Umatov, V. I. .
XIV INTERNATIONAL CONFERENCE ON TOPICS IN ASTROPARTICLE AND UNDERGROUND PHYSICS (TAUP 2015), PTS 1-7, 2016, 718
[76]   Double β decay of 116Cd.: Final results of the Solotvina experiment and CAMEO project. [J].
Danevich, FA ;
Bizzeti, PG ;
Fazzini, TF ;
Georgadze, AS ;
Kobychev, VV ;
Kropivyansky, BN ;
Maurenzig, PR ;
Nikolaiko, AS ;
Tretyak, VI ;
Zdesenko, SY ;
Zdesenko, YG .
NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2005, 138 :230-232
[77]   ATTEMPT TO DETECT THE ANTINEUTRINOS FROM A NUCLEAR REACTOR BY THE CL-37(NU-BARE-)A-37 REACTION [J].
DAVIS, R .
PHYSICAL REVIEW, 1955, 97 (03) :766-769
[78]   The contribution of light Majorana neutrinos to neutrinoless double beta decay and cosmology [J].
Dell'Oro, S. ;
Marcocci, S. ;
Viel, M. ;
Vissani, F. .
JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2015, (12)
[79]   Neutrinoless Double Beta Decay: 2015 Review [J].
Dell'Oro, Stefano ;
Marcocci, Simone ;
Viel, Matteo ;
Vissani, Francesco .
ADVANCES IN HIGH ENERGY PHYSICS, 2016, 2016
[80]  
Deppisch F. F., ARXIV160602908NUCLTH