Status and perspectives of double beta decay - Window to new physics beyond the standard model of particle physics

被引:94
|
作者
Klapdor-Kleingrothaus, HV [1 ]
机构
[1] Max Planck Inst Kernphys, D-69029 Heidelberg, Germany
来源
关键词
D O I
10.1142/S0217751X98001852
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
Nuclear double beta decay provides an extraordinarily broad potential to search for beyond Standard Model physics, probing already now the TeV scale, on which new physics should manifest itself. These possibilities are reviewed here. First, the results of present generation experiments are presented. The most sensitive one of them - the Heidelberg-Moscow experiment in the Gran Sasso - probes the electron mass now in the sub eV region and will reach a limit of similar to 0.1 eV in a few years. Basing to a large extent on the theoretical work of the Heidelberg Double Beta Group in the last two years, results are obtained also for SUSY models (R-parity breaking, sneutrino mass), leptoquarks (leptoquark-Higgs coupling), compositeness, right-handed W boson mass and others. These results are comfortably competitive to corresponding results from high-energy accelerators like TEVATRON, HERA, etc. Second, future perspectives of beta beta research are discussed. A. new Heidelberg experimental proposal (GENIUS) is presented which would allow one to increase the sensitivity for Majorana neutrino masses from the present level of at best 0.1 eV down to 0.01 or even 0.001 eV. Its physical potential would be a breakthrough into the multi-TeV range for many beyond standard models. Its sensitivity for neutrino oscillation parameters would be higher than that for all present terrestrial neutrino oscillation experiments and of those planned for the future. It could probe directly the atmospheric neutrino problem and even the large angle solution of the solar neutrino problem. It would further, already in a first step, using only 100 kg of natural Ge detectors, cover almost the full MSSM parameter space for prediction of neutralinos as cold dark matter, making the experiment competitive to LHC in the search for supersymmetry.
引用
收藏
页码:3953 / 3992
页数:40
相关论文
共 50 条
  • [31] Particle physics beyond the standard model: Astrophysical constraints
    Viaux, N.
    Catelan, M.
    Raffelt, G. G.
    Redondo, J.
    NEUTRINO PHYSICS AND ASTROPHYSICS, 2012, 182 : 337 - 341
  • [32] PARTICLE PHYSICS AND COSMOLOGY BEYOND THE STANDARD MODEL(S)
    SHAFI, Q
    PROCEEDINGS OF THE 13TH INTERNATIONAL CONFERENCE ON NEUTRINO PHYSICS AND ASTROPHYSICS, 1989, : 668 - 673
  • [33] Double beta decay: A problem of particle, nuclear and atomic physics
    Simkovic, Fedor
    PROGRESS IN PARTICLE AND NUCLEAR PHYSICS, 2010, 64 (02) : 219 - 227
  • [34] Some particle physics aspects of neutrinoless double beta decay
    Hirsch, M
    Klapdor-Kleingrothaus, HV
    PROGRESS IN PARTICLE AND NUCLEAR PHYSICS, VOL 40: NEUTRINOS IN ASTRO, PARTICLE AND NUCLEAR PHYSICS, 1998, 40 : 323 - 332
  • [35] Some particle physics aspects of neutrinoless double beta decay
    Max-Planck-Inst fuer Kernphysik, Heidelberg, Germany
    Progr Part Nucl Phys, (323-332):
  • [36] NEUTRINO-LESS DOUBLE BETA DECAY AND PARTICLE PHYSICS
    Rodejohann, Werner
    INTERNATIONAL JOURNAL OF MODERN PHYSICS E, 2011, 20 (09): : 1833 - 1930
  • [37] Particle physics implications of neutrinoless double-beta decay
    Mohapatra, RN
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 1999, 77 : 376 - 385
  • [38] Kerr-Newman spinning particle meets "New Physics" beyond the Standard Model: Unification of gravitation with particle physics
    Burinskii, Alexander
    15TH MARCEL GROSSMANN MEETING, PT A, 2022, : 1394 - 1400
  • [39] Improved predictions of the standard model and the detection of new physics in neutron beta decay
    García, A
    García-Luna, JL
    PHYSICS LETTERS B, 2002, 546 (3-4) : 247 - 252
  • [40] Electroweak physics and physics beyond the standard model
    Bellagamba, L.
    Sauvan, E.
    Spiesberger, H.
    Deep Inelastic Scattering, 2007, : 867 - 880