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Neutrino physics with Borexino [PDF]

open access: yesProceedings of 36th International Conference on High Energy Physics — PoS(ICHEP2012), 2013
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Borexino detector performances

The Sixteenth Marcel Grossmann Meeting, 2023
Borexino, a large volume detector for low energy neutrino spectroscopy, is currently taking data underground since 2007 at the Laboratori Nazionali del Gran Sasso, Italy. The main goal of the experiment is the real-time measurement of solar neutrinos, especially the low energy part of the spectrum.
Caminata, A   +95 more
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STATUS OF BOREXINO

Neutrinos and Implications for Physics Beyond the Standard Model, 2003
Borexino is a real-time solar neutrino detector under commissioning at the Gran Sasso underground laboratories (Italy). The main goal of the experiment is the spectroscopy of sub-MeV solar neutrinos focusing on the measurement of the 7 Be neutrino flux on Earth.
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RESULTS FROM BOREXINO AT LNGS

2017
The Borexino experiment is an ultra-pure liquid scintillator detector, running at Laboratori Nazionali del Gran Sasso (Italy). Borexino has completed the real time spectroscopy of the solar neutrinos generated in the proton-proton chain in the core of the Sun. This proceedings reviews the Borexino experiment and the first direct measurement of pp solar
Davini, Stefano   +72 more
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Water purification in Borexino

AIP Conference Proceedings, 2013
Astroparticle Physics and Underground experiments searching for rare nuclear events, need high purity materials to act as detectors or detector shielding. Water has the advantage of being cheap, dense and easily available. Most of all, water can be purified to the goal of obatining a high level of radiopurity.
M. Giammarchi   +6 more
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Geoneutrinos from Borexino

Giornale di Fisica, 2023
Thanks to the progress of neutrino physics, today we are able of exploiting neutrinos as a tool to study astrophysical objects. Measurement of geoneutrinos, electron flavour (anti)neutrinos produced in radioactive decays inside the Earth, represents a unique tool to access information about the deep Earth.
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Borexino: a status report

Nuclear Physics B - Proceedings Supplements, 2002
Abstract We report on the status, technology, and physics reach of Borexino, which will directly measure the 862 keV 7 Be neutrinos from the sun. This will be a powerful probe of all currently allowed solar neutrino oscillation parameters, as well as an important test of our basic understanding of solar neutrino physics. The primary challenge of the
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