Universe (Dec 2018)

Result on the Neutrinoless Double Beta Decay Search of 82Se with the CUPID-0 Experiment

  • Fabio Bellini,
  • Oscar Azzolini,
  • Maria Teresa Barrera,
  • Jeffrey Beeman,
  • Mattia Beretta,
  • Matteo Biassoni,
  • Chiara Brofferio,
  • Carlo Bucci,
  • Lucia Canonica,
  • Silvia Capelli,
  • Laura Cardani,
  • Paolo Carniti,
  • Nicola Casali,
  • Lorenzo Cassina,
  • Massimiliano Clemenza,
  • Oliverio Cremonesi,
  • Angelo Cruciani,
  • Antonio D’Addabbo,
  • Ioan Dafinei,
  • Sergio Di Domizio,
  • Fernando Ferroni,
  • Luca Gironi,
  • Andrea Giuliani,
  • Paolo Gorla,
  • Claudio Gotti,
  • Giorgio Keppel,
  • Maria Martinez,
  • Silvio Morganti,
  • Sergei Nagorny,
  • Massimiliano Nastasi,
  • Stefano Nisi,
  • Claudia Nones,
  • Donato Orlandi,
  • Lorenzo Pagnanini,
  • Marco Pallavicini,
  • Vincenzo Palmieri,
  • Luca Pattavina,
  • Maura Pavan,
  • Gianluigi Pessina,
  • Valerio Pettinacci,
  • Stefano Pirro,
  • Stefano Pozzi,
  • Ezio Previtali,
  • Andrei Puiu,
  • Claudia Rusconi,
  • Karoline Schäffner,
  • Claudia Tomei,
  • Marco Vignati,
  • Anastasia Zolotarova

DOI
https://doi.org/10.3390/universe5010002
Journal volume & issue
Vol. 5, no. 1
p. 2

Abstract

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CUPID-0 is the first large array of scintillating Zn 82 Se cryogenic calorimeters (bolometers) implementing particle identification for the search of the neutrinoless double beta decay (0 ν β β ). The detector consists of 24 enriched Zn 82 Se bolometers for a total 82 Se mass of 5.28 kg and it has been taking data in the underground LNGS (Italy) since March 2017. In this article we show how the dual read-out provides a powerful tool for the α particles rejection. The simultaneous use of the heat and light information allows us to reduce the background down to (3.2 − 1.1 + 1.3 )×10 − 3 counts/(keV kg year), an unprecedented level for cryogenic calorimeters. In a total exposure of 5.46 kg year Zn 82 Se we set the most stringent limit on the 0 ν β β decay 82 Se half-life T 1 / 2 0 ν > 4.0 × 10 24 year at 90% C.I.

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