Optimization of the first CUPID detector module
CUPID collaboration: A. Armatol, C. Augier, F. T. Avignone III, O., Azzolini, M. Balata, K. Ballen, A. S. Barabash, G. Bari, A. Barresi, D., Baudin, F. Bellini, G. Benato, M. Beretta, M. Bettelli, M. Biassoni, J., Billard, V. Boldrini, A. Branca, C. Brofferio, C. Bucci

TL;DR
This paper reports on the optimization and testing of the first CUPID detector module, demonstrating improved light collection and particle discrimination capabilities crucial for neutrinoless double beta decay searches.
Contribution
It introduces a new optimized detector structure and light sensor design, validated through characterization and comparison with alternative configurations.
Findings
Achieved an energy resolution of 5.9 keV FWHM at 3034 keV
Improved light collection compared to previous measures
Validated alpha particle rejection >99.9%
Abstract
CUPID will be a next generation experiment searching for the neutrinoless double decay, whose discovery would establish the Majorana nature of the neutrino. Based on the experience achieved with the CUORE experiment, presently taking data at LNGS, CUPID aims to reach a background free environment by means of scintillating LiMoO crystals coupled to light detectors. Indeed, the simultaneous heat and light detection allows us to reject the dominant background of particles, as proven by the CUPID-0 and CUPID-Mo demonstrators. In this work we present the results of the first test of the CUPID baseline module. In particular, we propose a new optimized detector structure and light sensors design to enhance the engineering and the light collection, respectively. We characterized the heat detectors, achieving an energy resolution of (5.9 0.2) keV FWHM at…
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