2020
DOI: 10.1007/s10909-020-02402-9
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The CUORE Detector and Results

Abstract: The cryogenic underground observatory for rare events (CUORE) is a cryogenic experiment searching for neutrinoless double beta decay (0) of 130 Te. The detector consists of an array of 988 TeO 2 crystals arranged in a compact cylindrical structure of 19 towers. We report the CUORE initial operations and optimization campaigns. We then present the CUORE results on 0 and 2 decay of 130 Te obtained from the analysis of the physics data acquired in 2017.

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Cited by 19 publications
(13 citation statements)
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“…Preliminary results indicated a (2 ) half-life for 130 Te of 0 1/2 = [7.9 ± 0.1(stat) ± 0.2(syst)] • 10 20 year [11]. This is the world's most precise measurement for this isotope.…”
Section: Cuore Backgroundmentioning
confidence: 84%
“…Preliminary results indicated a (2 ) half-life for 130 Te of 0 1/2 = [7.9 ± 0.1(stat) ± 0.2(syst)] • 10 20 year [11]. This is the world's most precise measurement for this isotope.…”
Section: Cuore Backgroundmentioning
confidence: 84%
“…Thanks to developed background model, the background contribution that could be ascribed to the two-neutrino double beta decay (2𝜈𝛽𝛽) of 130 Te was successfully reconstructed (Figure 2). Preliminary results indicated a (2𝜈𝛽𝛽) half-life for 130 Te of 𝑇 0𝜈 1/2 = [7.9 ± 0.1(stat) ± 0.2(syst)] • 10 20 year [11]. This is the world's most precise measurement for this isotope.…”
Section: Cuore Backgroundmentioning
confidence: 86%
“…From this ratio and the measured value of 130 Te double beta decay half life, the 128 Te one is extracted. The latest recommended value is obtained by exploiting the weighted average of the 130 Te half lives reported in [109,110], and from the half lives ratio one obtains [10]:…”
Section: Standard Model Allowed Decaymentioning
confidence: 99%