The CROSS experiment: detector construction, background projection, and sensitivity to 100Mo 02β decay
D. Auguste, A. S. Barabash, G. Benato, V. Berest, L. Bergé, M. Buchynska, J. M. Calvo-Mozota, J. Cao, P. Carniti, M. Chapellier, D. Cintas, I. Cojocari, I. Dafinei, F. A. Danevich, M. De Deo, A. Drobizhev, L. Dumoulin, F. Ferri, A. Giuliani, C. Gotti, Ph. Gras, A. Ianni, V. V. Kobychev, Yu. G. Kolomensky, S. I. Konovalov, P. Loaiza, P. de Marcillac, S. Marnieros, C. A. Marrache-Kikuchi, M. Martinez, C. Nones, E. Olivieri, A. Ortiz de Solórzano, M. Pageot, Y. Peinaud, G. Pessina, D. V. Poda, Ph. Rosier, B. Schmidt, R. Serino, V. I. Tretyak, V. I. Umatov, M. Velazquez, M. Zarytskyy, A. Zolotarova
Abstract
The CROSS experiment to search for neutrinoless double-beta (02β) decay in 100Mo with the help of an array of scintillating cryogenic calorimeters, containing 4.9 kg of 100Mo, has been ongoing in a low-background setup at the Canfranc underground laboratory (Spain) since mid-November 2025. In this paper, we present the construction of the CROSS detector and the description of Geant4-based Monte Carlo simulations of expected background in the region of interest. The simulations predict the background index in a 100-keV-wide interval centered at the Q-value of 100Mo (3034 keV) on the level of 3.2(5) × 10-3 cnts/keV/kg/yr. Taking into account an 18% deadtime induced by the muon veto cut and a typical 90% duty cycle of the facility, such background level would allow to reach the world-leading sensitivity to 100Mo 02β decay (lim T1/2 4 × 1024 yr) in 1 year of data taking. Considering conservatively a factor 3 (10) worse background index due to unpredictable radioactive contamination of construction materials and/or detector performance, a 2-yr-long operation of the CROSS array would be still compatible with the best (competitive) sensitivity to 02β decay in 100Mo.
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