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AMoRE experiment: a search for neutrinoless double beta decay of100Mo isotope with40Ca100MoO4cryogenic scintillation detector

Authors :
F.A. Danevich
M. K. Lee
J. Li
J. I. Lee
R.B. Podviyanuk
D. M. Chernyak
X. R. Li
V.M. Mokina
Y. Satou
S. P. Yakimenko
R. S. Boiko
S.C. Kim
V.N. Kornoukhov
H. C. Bhang
Hua Jiang
J. M. Lee
H.S. Lee
P. A. Polozov
A. M. Gezhaev
S. Choi
V. V. Kazalov
Kiyoshi Tanida
J. H. Choi
Y. D. Kim
Sung Myung
Loredana Gastaldo
Y Yuryev
Achim Fleischmann
M. J. Lee
Christian Enss
Qian Yue
Y S Hwang
D.V. Poda
H. J. Kim
V. V. Kuzminov
V. I. Tretyak
J. H. So
N. D. Khanbekov
Y H Kim
A. M. Gangapshev
S. S. Ratkevich
K. V. Efendiev
Woon Gu Kang
V.V. Kobychev
H Park
S.L. Olsen
Sun-Whe Kim
O. G. Polischuk
K B Kim
K. B. Lee
A. S. Nikolaiko
Sang Jun Lee
S. I. Panasenko
Source :
Journal of Physics: Conference Series. 375:042023
Publication Year :
2012
Publisher :
IOP Publishing, 2012.

Abstract

AMoRE (Advanced Mo based Rare process Experiment) collaboration is going to use calcium molybdate crystals as cryogenic scintillation detector in a search for neutrinoless DBD of 100Mo isotope. Simultaneous detection of phonons and light will be used to reject internal background. A FWHM resolution of 0.2% in the phonon channel has been achieved with a 0.5 cm3 crystal. Several 40Ca100MoO4 crystals (≈ 0.5 kg) have been developed from enriched 100Mo and depleted 40Ca materials. The light yield of these crystals has been shown to be comparable with reference CaMoO4 scintillators for temperatures ranging down to 8 K. The content of dangerous radioisotopes in the crystals is under measurement. The projected sensitivity of the experiment for a 250 kg × years exposure is lim T1/2 ~ 3 × 1026 years, which corresponds to the effective Majorana neutrino mass mv ~ 0.02 – 0.06 eV.

Details

ISSN :
17426596
Volume :
375
Database :
OpenAIRE
Journal :
Journal of Physics: Conference Series
Accession number :
edsair.doi.dedup.....5a2fe59b79cbcf2a696b22a4d197ce28
Full Text :
https://doi.org/10.1088/1742-6596/375/1/042023