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Neutrinoless Double Beta Decay in the SNO+ Experiment
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abstract
SNO+ is a large multipurpose neutrino detector situated 2km underground at SNOLAB in Sudbury, Canada. It reuses the structure of the SNO experiment with numerous infrastructure upgrades and with heavy water replaced by ultra-pure liquid scintillator. The detector will be loaded with 0.5% natural tellurium in order to search for neutrinoless double beta decay ($0\nu\beta\beta$). The expected sensitivity after 5 years of data taking is T$^{0\nu} _{1/2} > 1.9 \times 10^{26}$ years (90% CL). A future increase in loading could achieve a sensitivity of ${\sim}10^{27}$ years.
Forward citations
Cited by 2 Pith papers
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RGE solver for the complete dim-7 SMEFT interactions and its application to $0\nu\beta\beta$ decay
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Neutrino-less double beta decay in the $\nu$ Standard Model
A comprehensive scan of the 3+3 Type-I seesaw model finds that current and next-generation neutrinoless double beta decay experiments have broad discovery potential in both normal and inverted neutrino mass ordering.
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