A Method to Load Tellurium in Liquid Scintillator for the Study of Neutrinoless Double Beta Decay |
Accepted by Nuclear Instruments and Methods A |
Link |
Thermally-driven scintillator flow in the SNO+ neutrino detector |
Submitted to Nuclear Instruments and Methods A |
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Evidence of Antineutrinos from Distant Reactors Using Pure Water at SNO+ |
Physical Review Letters (130) 091801, 2023 |
Link |
Improved search for invisible modes of nucleon decay in water with the SNO+ detector |
Physical Review D (105) 112012, 2022 |
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Optical calibration of the SNO+ detector in the water phase with deployed sources |
Journal of Instrumentation (16) P10021, 2021 |
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The SNO+ experiment |
Journal of Instrumentation (16) P08059, 2021 |
Link |
Development, characterisation, and deployment of the SNO+ liquid scintillator |
Journal of Instrumentation (16) P05009, 2021 |
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Measurement of neutron-proton capture in the SNO+ water phase |
Physical Review C (102) 014002, 2020 |
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Search for invisible modes of nucleon decay in water with the SNO+ detector |
Physical Review D (99) 032008, 2019 |
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Measurement of the 8B Solar Neutrino Flux in SNO+ with Very Low Backgrounds |
Physical Review D (99) 012012, 2019 |
Link |
A rope-net support system for the liquid scintillator detector for the SNO+ experiment |
Nuclear Instruments and Methods A |
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Current Status and Future Prospects of the SNO+ Experiment |
Advances in High Energy Physics (2016) 6194250, 2016 |
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The calibration system for the photomultiplier array of the SNO+ experiment |
Journal of Instrumentation (10) P03002 |
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Scintillation decay time and pulse shape discrimination in oxygenated and deoxygenated solution of linear alkylbenzene for the SNO+ experiment |
Nuclear Instruments and Methods A |
Link |