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The CUORE Detector and Results

  • Author(s): Nutini, I;
  • Adams, DQ;
  • Alduino, C;
  • Alfonso, K;
  • Avignone, FT;
  • Azzolini, O;
  • Bari, G;
  • Bellini, F;
  • Benato, G;
  • Biassoni, M;
  • Branca, A;
  • Brofferio, C;
  • Bucci, C;
  • Caminata, A;
  • Campani, A;
  • Canonica, L;
  • Cao, XG;
  • Capelli, S;
  • Cappelli, L;
  • Cardani, L;
  • Carniti, P;
  • Casali, N;
  • Chiesa, D;
  • Chott, N;
  • Clemenza, M;
  • Copello, S;
  • Cosmelli, C;
  • Cremonesi, O;
  • Creswick, RJ;
  • D’Addabbo, A;
  • D’Aguanno, D;
  • Dafinei, I;
  • Davis, CJ;
  • Dell’Oro, S;
  • Domizio, SD;
  • Dompè, V;
  • Fang, DQ;
  • Fantini, G;
  • Faverzani, M;
  • Ferri, E;
  • Ferroni, F;
  • Fiorini, E;
  • Franceschi, MA;
  • Freedman, SJ;
  • Fujikawa, BK;
  • Giachero, A;
  • Gironi, L;
  • Giuliani, A;
  • Gorla, P;
  • Gotti, C;
  • Gutierrez, TD;
  • Han, K;
  • Heeger, KM;
  • Huang, RG;
  • Huang, HZ;
  • Johnston, J;
  • Keppel, G;
  • Kolomensky, YG;
  • Ligi, C;
  • Ma, YG;
  • Ma, L;
  • Marini, L;
  • Maruyama, RH;
  • Mei, Y;
  • Moggi, N;
  • Morganti, S;
  • Napolitano, T;
  • Nastasi, M;
  • Nikkel, J;
  • Nones, C;
  • Norman, EB;
  • Novati, V;
  • Nucciotti, A;
  • O’Donnell, T;
  • Ouellet, JL;
  • Pagliarone, CE;
  • Pagnanini, L;
  • Pallavicini, M;
  • Pattavina, L;
  • Pavan, M;
  • Pessina, G;
  • Pettinacci, V;
  • Pira, C;
  • Pirro, S;
  • Pozzi, S;
  • Previtali, E;
  • Puiu, A;
  • Rosenfeld, C;
  • Rusconi, C;
  • Sakai, M;
  • Sangiorgio, S;
  • Schmidt, B;
  • Scielzo, ND;
  • Singh, V;
  • Sisti, M;
  • Speller, D;
  • Taffarello, L;
  • Terranova, F;
  • Tomei, C;
  • Vignati, M
  • et al.
Abstract

The cryogenic underground observatory for rare events (CUORE) is a cryogenic experiment searching for neutrinoless double beta decay (0 νββ) of 130Te. The detector consists of an array of 988TeO2 crystals arranged in a compact cylindrical structure of 19 towers. We report the CUORE initial operations and optimization campaigns. We then present the CUORE results on 0 νββ and 2 νββ decay of 130Te obtained from the analysis of the physics data acquired in 2017.

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