activity
20182022
most citedFinal result of CUPID-0 phase-I in the search for the Se Neutrinoless Double Beta Decay

91 citations · 209 across the 10 of their papers we have counts for

collaborators

27 papers

physics.ins-det20221 cited

Large area photon calorimeter with Ir-Pt bilayer transition-edge sensor for the CUPID experiment

V. Singh, G. Benato, M. Beretta +17

CUPID is a next-generation neutrinoless double-beta decay experiment that will require cryogenic light detectors to improve background suppression, via the simultaneous readout of…

nucl-ex20225 cited

Toward CUPID-1T

A. Armatol, C. Augier, F. T. Avignone +172

Current experiments to search for broken lepton-number symmetry through the observation of neutrinoless double-beta decay () provide the most stringent limits on the…

physics.ins-det2022

Optimization of the first CUPID detector module

CUPID collaboration, A. Armatol, C. Augier +175

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 experi…

nucl-ex2021

Measurement of Po half-life with the CUPID-0 experiment

O. Azzolini, J. W. Beeman, F. Bellini +44

Rare event physics demands very detailed background control, high-performance detectors, and custom analysis strategies. Cryogenic calorimeters combine all these ingredients very e…

physics.ins-det2021

Background identification in cryogenic calorimeters through delayed coincidences

O. Azzolini, J. W. Beeman, F. Bellini +42

Localization and modeling of radioactive contaminations is a challenge that ultra-low background experiments are constantly facing. These are fundamental steps both to extract scie…

physics.ins-det2021

Improving radioactive contaminant identification through the analysis of delayed coincidences with an -spectrometer

G. Baccolo, A. Barresi, M. Beretta +7

In the framework of rare event searches, the identification of radioactive contaminants in ultra-pure samples is a challenging task, because the signal is often at the same level o…