Localization and modeling of radioactive contaminations is a challenge that ultra-low background experiments are constantly facing. These are fundamental steps both to extract scientific results and to further reduce the background of the detectors. Here we present an innovative technique based on the analysis of α- α delayed coincidences in 232Th and 238U decay chains, developed to investigate the contaminations of the ZnSe crystals in the CUPID-0 experiment. This method allows to disentangle surface and bulk contaminations of the detectors relying on the different probability to tag delayed coincidences as function of the α decay position
CUPID-0 is the first large mass array of enriched Zn$$^{82}$$Se scintillating low temperature calori...
CUPID-0 is the first large mass neutrino-less double beta decay ( 0νββ ) experiment based on cryogen...
Rare event physics demands very detailed background control, high-performance detectors, and custom ...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
International audienceLocalization and modeling of radioactive contaminations is a challenge that ul...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
Abstract In the framework of rare event searches, the identification of radioactive contaminants in ...
The suppression of spurious events in the region of interest for neutrinoless double beta decay will...
The suppression of spurious events in the region of interest for neutrinoless double beta decay will...
International audienceCUPID-0 is the first large mass array of enriched Zn$^{82}$ Se scintillating l...
Cryogenic calorimeters are currently used by experiments searching for neutrino-less double beta dec...
CUPID-0 is the first large mass array of enriched Zn$$^{82}$$Se scintillating low temperature calori...
CUPID-0 is the first large mass neutrino-less double beta decay ( 0νββ ) experiment based on cryogen...
Rare event physics demands very detailed background control, high-performance detectors, and custom ...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
International audienceLocalization and modeling of radioactive contaminations is a challenge that ul...
Localization and modeling of radioactive contaminations is a challenge that ultra-low background exp...
Abstract In the framework of rare event searches, the identification of radioactive contaminants in ...
The suppression of spurious events in the region of interest for neutrinoless double beta decay will...
The suppression of spurious events in the region of interest for neutrinoless double beta decay will...
International audienceCUPID-0 is the first large mass array of enriched Zn$^{82}$ Se scintillating l...
Cryogenic calorimeters are currently used by experiments searching for neutrino-less double beta dec...
CUPID-0 is the first large mass array of enriched Zn$$^{82}$$Se scintillating low temperature calori...
CUPID-0 is the first large mass neutrino-less double beta decay ( 0νββ ) experiment based on cryogen...
Rare event physics demands very detailed background control, high-performance detectors, and custom ...