paper

Development of Mo-containing scintillating bolometers for a high-sensitivity neutrinoless double-beta decay search

arXiv:1704.01758 · doi:10.1140/epjc/s10052-017-5343-2

Abstract

This paper reports on the development of a technology involving Mo-enriched scintillating bolometers, compatible with the goals of CUPID, a proposed next-generation bolometric experiment to search for neutrinoless double-beta decay. Large mass (1~kg), high optical quality, radiopure Mo-containing zinc and lithium molybdate crystals have been produced and used to develop high performance single detector modules based on 0.2--0.4~kg scintillating bolometers. In particular, the energy resolution of the lithium molybdate detectors near the -value of the double-beta transition of Mo (3034~keV) is 4--6~keV FWHM. The rejection of the -induced dominant background above 2.6~MeV is better than 8. Less than 10~Bq/kg activity of Th (Th) and Ra in the crystals is ensured by boule recrystallization. The potential of Mo-enriched scintillating bolometers to perform high sensitivity double-beta decay searches has been demonstrated with only 10~kgd exposure: the two neutrino double-beta decay half-life of Mo has been measured with the up-to-date highest accuracy as = [6.90 0.15(stat.) 0.37(syst.)] 10~yr. Both crystallization and detector technologies favor lithium molybdate, which has been selected for the ongoing construction of the CUPID-0/Mo demonstrator, containing several kg of Mo.

25 pages, 12 figures, 8 tables; submitted to EPJC