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Study of the GERDA Phase II background spectrum
- Agostini, M;
- Allardt, M;
- Bakalyarov, AM;
- Balata, M;
- Barabanov, I;
- Baudis, L;
- Bauer, C;
- Bellotti, E;
- Belogurov, S;
- Belyaev, ST;
- Benato, G;
- Bettini, A;
- Bezrukov, L;
- Bode, T;
- Borowicz, D;
- Brudanin, V;
- Brugnera, R;
- Caldwell, A;
- Cattadori, C;
- Chernogorov, A;
- D’Andrea, V;
- Demidova, EV;
- Di Marco, N;
- Domula, A;
- Doroshkevich, E;
- Egorov, V;
- Falkenstein, R;
- Frodyma, N;
- Gangapshev, A;
- Garfagnini, A;
- Gooch, C;
- Grabmayr, P;
- Gurentsov, V;
- Gusev, K;
- Hakenmüller, J;
- Hegai, A;
- Heisel, M;
- Hemmer, S;
- Hofmann, W;
- Hult, M;
- Inzhechik, LV;
- Csáthy, J Janicskó;
- Jochum, J;
- Junker, M;
- Kazalov, V;
- Kihm, T;
- Kirpichnikov, IV;
- Kirsch, A;
- Kish, A;
- Klimenko, A;
- Kneißl, R;
- Knöpfle, KT;
- Kochetov, O;
- Kornoukhov, VN;
- Kuzminov, VV;
- Laubenstein, M;
- Lazzaro, A;
- Lebedev, VI;
- Lehnert, B;
- Liao, HY;
- Lindner, M;
- Lippi, I;
- Lubashevskiy, A;
- Lubsandorzhiev, B;
- Lutter, G;
- Macolino, C;
- Majorovits, B;
- Maneschg, W;
- Medinaceli, E;
- Miloradovic, M;
- Mingazheva, R;
- Misiaszek, M;
- Moseev, P;
- Nemchenok, I;
- Palioselitis, D;
- Panas, K;
- Pandola, L;
- Pelczar, K;
- Pullia, A;
- Riboldi, S;
- Rumyantseva, N;
- Sada, C;
- Salamida, F;
- Salathe, M;
- Schmitt, C;
- Schneider, B;
- Schönert, S;
- Schreiner, J;
- Schulz, O;
- Schütz, A-K;
- Schwingenheuer, B;
- Selivanenko, O;
- Shevzik, E;
- Shirchenko, M;
- Simgen, H;
- Smolnikov, A;
- Stanco, L;
- Vanhoefer, L;
- Vasenko, AA;
- Veresnikova, A;
- von Sturm, K;
- Wagner, V;
- Wegmann, A;
- Wester, T;
- Wiesinger, C;
- Wojcik, M;
- Yanovich, E;
- Zhitnikov, I;
- Zhukov, SV;
- Zinatulina, D;
- Zuber, K;
- Zuzel, G
- et al.
Published Web Location
https://iopscience.iop.org/article/10.1088/1742-6596/888/1/012106/pdfNo data is associated with this publication.
Abstract
The Gerda experiment, located at the Laboratori Nazionali del Gran Sasso (LNGS) of INFN in Italy, searches for the neutrinoless double beta (0νββ) decay of 76Ge. Gerda Phase II is aiming to reach a sensitivity for the 0νββ half life of 1026 yr in ∼ 3 years of physics data taking with 100 kg•yr of exposure and a background index of ∼ 10-3 cts/(keV•kg•yr). After 6 months of acquisition a first data release with 10.8 kg•yr of exposure is performed, showing that the design background is achieved. In this work a study of the Phase II background spectrum, the main spectral structures and the background sources will be presented and discussed.