MOON for neutrino-less double beta decaysMajorana neutrinos by spectroscopic studies of double beta decays

被引:0
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作者
H. Ejiri
P. Doe
S. R. Elliott
J. Engel
M. Finger
M. Finger
K. Fushimi
V. Gehman
M. Greenfield
R. Hazama
P. Kavitov
V. Kekelidze
H. Nakamura
M. Nomachi
R. G. H. Robertson
T. Shima
M. Slunecka
G. Shirkov
A. Sissakian
A. Titov
S. Umehara
V. Vaturin
V. Voronov
J. F. Wilkerson
D. I. Will
S. Yoshida
V. Vrba
机构
[1] Osaka University,RCNP
[2] National Institute of Radiological Sciences,Faculty of Nuclear Sciences and Physical Engineering
[3] Czech Technical University in Prague,CENPA
[4] University Washington,Physics and Astronomy
[5] LANL,FMP
[6] Univ. North Carolina,IAS
[7] Charles University,Physics
[8] University of Tokushima,Higashi Hiroshima
[9] International Christian University,Nizhny Novgorod Region
[10] Hiroshima University,OULNS, Physics
[11] VNIIEF,RCNS
[12] Joint Institute for Nuclear Research,Institute of Physics
[13] Osaka University,undefined
[14] Tohoku University,undefined
[15] Akademy of Science,undefined
关键词
European Physical Journal Special Topic; Solar Neutrino; Nuclear Matrix Element; Source Thickness; 100Mo Isotope;
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摘要
The MOON (Majorana/Mo Observatory Of Neutrinos) project aims at studies of the Majorana nature of the neutrino (ν) and the ν-mass spectrum by spectroscopic experiments of neutrino-less double beta decays (0νββ) with the ν-mass sensitivity of 〈mνm〉 = 100−30 meV. The solid scintillator option of the MOON detector is a super ensemble of multi-layer modules, each being composed by PL scintillator plates and position-sensitive detector planes with good overall energy resolution of σ ≈ 2% at the Qββ ≈ 3 MeV. Thin ββ source films are interleaved between the detector planes. High localization of the two β tracks enables one to select true signals and reject BG ones. The multi-layer structure of the detector makes it realistic to build a compact ton-scale detector. MOON with detector ≠ ββ source is used for studying 0νββ decays from 100Mo, 82Se and other ββ isotopes with large Qββ. Real-time exclusive measurements of low energy solar neutrinos can be made by observing inverse β rays from solar-ν captures of 100Mo in delayed coincidence with the subsequent β decay of 100Tc.
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