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Detecting Solar CNO Neutrinos Using the Borexino Detector
Physics of particles and nucleiA. Derbin
semanticscholar +1 more source
Looking for Geo-Antineutrino Flux from 40K by the Borexino Detector
Physics of particles and nucleiL. B. Bezrukov, V. Sinev
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First Detection of Solar Neutrinos from the CNO Cycle with Borexino
Moscow University Physics Bulletin, 2022N. Rossi +95 more
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Ultra-low-background physics: lessons from BOREXINO and future steps
Proceedings of 12th Neutrino Oscillation Workshop — PoS(NOW2024)S. Zavatarelli +73 more
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2008
The Borexino experiment started the data tacking in May 2007. It is able to detect in real time neutrino interactions below 2 MeV, due to the very high radio-purity reached by the detector, better of more than one order of magnitude than the design goal. This allows the determination of the single fluxes of solar neutrinos from all sources.
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The Borexino experiment started the data tacking in May 2007. It is able to detect in real time neutrino interactions below 2 MeV, due to the very high radio-purity reached by the detector, better of more than one order of magnitude than the design goal. This allows the determination of the single fluxes of solar neutrinos from all sources.
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Astroparticle, Particle and Space Physics, Detectors and Medical Physics Applications, 2010
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