Searching for neutrinoless double beta decay is a top priority in particle and astroparticle physics, being the most sensitive test of lepton number violation and the only suitable process to probe the Majorana nature of neutrinos. In order to increase the experimental sensitivity for this particular search, ton-scale detectors operated at nearly zero-background conditions with a low keV energy resolution at the expected signal peak are required. In this scenario, cryogenic detectors have been proven effective in addressing many of these issues simultaneously. After long technical developments, the Cryogenic Underground Observatory for Rare Events (CUORE) experiment established the possibility to operate large-scale detectors based on this technology. Parallel studies pointed out that scintillating cryogenic detectors represent a suitable upgrade for the CUORE design, directed towards higher sensitivities. In this work, we review the recent development of cryogenic detectors, starting from the state-of-the-art and outlying the path toward next-generation experiments.

Beretta, M., Pagnanini, L. (2021). Development of cryogenic detectors for neutrinoless double beta decay searches with cuore and cupid. APPLIED SCIENCES, 11(4), 1-15 [10.3390/app11041606].

Development of cryogenic detectors for neutrinoless double beta decay searches with cuore and cupid

Beretta M.
;
Pagnanini L.
2021

Abstract

Searching for neutrinoless double beta decay is a top priority in particle and astroparticle physics, being the most sensitive test of lepton number violation and the only suitable process to probe the Majorana nature of neutrinos. In order to increase the experimental sensitivity for this particular search, ton-scale detectors operated at nearly zero-background conditions with a low keV energy resolution at the expected signal peak are required. In this scenario, cryogenic detectors have been proven effective in addressing many of these issues simultaneously. After long technical developments, the Cryogenic Underground Observatory for Rare Events (CUORE) experiment established the possibility to operate large-scale detectors based on this technology. Parallel studies pointed out that scintillating cryogenic detectors represent a suitable upgrade for the CUORE design, directed towards higher sensitivities. In this work, we review the recent development of cryogenic detectors, starting from the state-of-the-art and outlying the path toward next-generation experiments.
Articolo in rivista - Articolo scientifico
Cryogenic detector; Lepton number violation; Neutrinoless double beta decay; Rare event search;
English
2021
11
4
1
15
1606
open
Beretta, M., Pagnanini, L. (2021). Development of cryogenic detectors for neutrinoless double beta decay searches with cuore and cupid. APPLIED SCIENCES, 11(4), 1-15 [10.3390/app11041606].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/514119
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