Dark Matter Search with CUORE-0 and CUORE

The Cryogenic Underground Observatory for Rare Events (CUORE) is a ton-scale experiment made of TeO2 bolometers that will probe the neutrinoless double beta decay of 130Te. Excellent energy resolution, low threshold and low background make CUORE sensitive to nuclear recoils, allowing a search for da...

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Veröffentlicht in:Physics procedia 2015, Vol.61 (C), p.13-20
Hauptverfasser: Aguirre, C.P., Artusa, D.R., Avignone, F.T., Azzolini, O., Beeman, J., Bellini, F., Bersani, A., Biassoni, M., Bucci, C., Camacho, A., Canonica, L., Cao, X., Capelli, S., Carbone, L., Carrettoni, M., Casali, N., Chott, N., Clemenza, M., Cosmelli, C., Cremonesi, O., Creswick, R.J., Dafinei, I., Dally, A., Datskov, V., De Biasi, A., Deninno, M.M., Di Domizio, S., di Vacri, M.L., Ejzak, L., Fang, D.Q., Farach, H.A., Faverzani, M., Fernandes, G., Ferroni, F., Fiorini, E., Franceschi, M.A., Freedman, S.J., Fujikawa, B.K., Giachero, A., Giuliani, A., Goett, J., Gotti, C., Gutierrez, T.D., Haller, E.E., Han, K., Heeger, K.M., Huang, H.Z., Kazkaz, K., Keppel, G., Kolomensky, Yu.G., Li, Y.L., Ligi, C., Liu, X., Ma, Y.G., Maiano, C., Maino, M., Martinez, M., Maruyama, R.H., Mei, Y., Moggi, N., Napolitano, T., Nisi, S., Nones, C., Norman, E.B., Nucciotti, A., O’Donnell, T., Orio, F., Ouellet, J.L., Pallavicini, M., Palmieri, V., Pattavina, L., Pavan, M., Pedretti, M., Pessina, G., Piperno, G., Pira, C., Pirro, S., Previtali, E., Rampazzo, V., Rosenfeld, C., Rusconi, C., Sangiorgio, S., Scielzo, N.D., Smith, A.R., Taffarello, L., Tenconi, M., Terranova, F., Tian, W.D., Tomei, C., Trentalange, S., Vignati, M., Wang, B.S., Wang, H.W., Wielgus, L., Wilson, J., Winslow, L.A., Wise, T., Zanotti, L., Zarra, C., Zhu, B.X.
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Sprache:eng
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Zusammenfassung:The Cryogenic Underground Observatory for Rare Events (CUORE) is a ton-scale experiment made of TeO2 bolometers that will probe the neutrinoless double beta decay of 130Te. Excellent energy resolution, low threshold and low background make CUORE sensitive to nuclear recoils, allowing a search for dark matter interactions. With a total mass of 741kg of TeO2, CUORE can search for an annual modulation of the counting rate at low energies. We present data obtained with CUORE-like detectors and the prospects for a dark matter search in CUORE-0, a 40-kg prototype, and CUORE.
ISSN:1875-3892
1875-3892
DOI:10.1016/j.phpro.2014.12.005