English

Results on $^{82}$Se $2\nu\beta\beta$ with CUPID-0 Phase I

Nuclear Experiment 2020-12-24 v1 High Energy Physics - Experiment

Abstract

The nucleus is an extraordinarily complex object where fundamental forces are at work. The solution of this many-body problem has challenged physicists for decades: several models with complementary virtues and flaws have been adopted, none of which has a universal predictive capability. Double beta decay is a second-order weak nuclear decay whose precise measurement might steer fundamental improvements in nuclear theory. Its knowledge paves the way to a much better understanding of many-body nuclear dynamics and clarifies, in particular, the role of multiparticle states. This is a useful input to a complete understanding of the dynamics of neutrino-less double beta decay, the chief physical process whose discovery may shed light to the matter-antimatter asymmetry of the universe and unveil the true nature of neutrinos. Here, we report the study of 2νββ2\nu\beta\beta-decay in 82^{82}Se with the CUPID-0 detector, an array of ZnSe crystals maintained at a temperature close to 'absolute zero' in an ultralow background environment. Thanks to the unprecedented accuracy in the measurement of the two electrons spectrum, we prove that the decay is dominated by a single intermediate state. We obtain also the most precise value for the 82^{82}Se 2νββ2\nu\beta\beta-decay half-life of T1/22ν=[8.60.1+0.2]×1019T^{2{\nu}}_{1/2} = [8.6^{+0.2}_{-0.1}] \times 10^{19} yr.

Keywords

Cite

@article{arxiv.2012.12648,
  title  = {Results on $^{82}$Se $2\nu\beta\beta$ with CUPID-0 Phase I},
  author = {L Pagnanini and O Azzolini and J W Beeman and F Bellini and M Beretta and M Biassoni and C Brofferio and C Bucci and S Capelli and L Cardani and P Carniti and N Casali and D Chiesa and M Clemenza and O Cremonesi and A Cruciani and I Dafinei and S Di Domizio and F Ferroni and L Gironi and A Giuliani and P Gorla and C Gotti and G Keppel and M Martinez and S Nagorny and M Nastasi and S Nisi and C Nones and D Orlandi and M Pallavicini and L Pattavina and M Pavan and G Pessina and V Pettinacci and S Pirro and S Pozzi and E Previtali and A Puiu and C Rusconi and K Schaffner and C Tomei and M Vignati and A S Zolotarova},
  journal= {arXiv preprint arXiv:2012.12648},
  year   = {2020}
}