English

Double-beta decay investigation with highly pure enriched $^{82}$Se for the LUCIFER experiment

Instrumentation and Detectors 2015-12-21 v3 High Energy Physics - Experiment Nuclear Experiment

Abstract

The LUCIFER project aims at deploying the first array of enriched scintillating bolometers for the investigation of neutrinoless double-beta decay of 82^{82}Se. The matrix which embeds the source is an array of ZnSe crystals, where enriched 82^{82}Se is used as decay isotope. The radiopurity of the initial components employed for manufacturing crystals, that can be operated as bolometers, is crucial for achieving a null background level in the region of interest for double-beta decay investigations. In this work, we evaluated the radioactive content in 2.5 kg of 96.3\% enriched 82^{82}Se metal, measured with a high-purity germanium detector at the Gran Sasso deep underground laboratory. The limits on internal contaminations of primordial decay chain elements of 232^{232}Th, 238^{238}U and 235^{235}U are respectively: <<61 μ\muBq/kg, << 110 μ\muBq/kg and <<74 μ\muBq/kg at 90\% C.L.. The extremely low-background conditions in which the measurement was carried out and the high radiopurity of the 82^{82}Se allowed us to establish the most stringent lower limits on the half-lives of double-beta decay of 82^{82}Se to 01+^+_1, 22+^+_2 and 21+^+_1 excited states of 82^{82}Kr of 3.4\cdot1022^{22} y, 1.3\cdot1022^{22} y and 1.0\cdot1022^{22} y, respectively, with a 90\% C.L..

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Cite

@article{arxiv.1508.01709,
  title  = {Double-beta decay investigation with highly pure enriched $^{82}$Se for the LUCIFER experiment},
  author = {J. W. Beeman and F. Bellini and P. Benetti and L. Cardani and N. Casali and D. Chiesa and M. Clemenza and I. Dafinei and S. Di Domizio and F. Ferroni and L. Gironi and A. Giuliani and C. Gotti and M. Laubenstein and M. Maino and S. Nagorny and S. Nisi and C. Nones and F. Orio and L. Pagnanini and L. Pattavina and G. Pessina and G. Piperno and S. Pirro and E. Previtali and C. Rusconi and K. Schäffner and C. Tomei and M. Vignati},
  journal= {arXiv preprint arXiv:1508.01709},
  year   = {2015}
}