Publications by authors named "B Caccianiga"

We present an improved measurement of the carbon-nitrogen-oxygen (CNO) solar neutrino interaction rate at Earth obtained with the complete Borexino Phase-III dataset. The measured rate, R_{CNO}=6.7_{-0.

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Article Synopsis
  • - The Borexino detector at Laboratori Nazionali del Gran Sasso successfully measured sub-MeV solar neutrinos using Cherenkov radiation and a technique linking photon hits to the Sun's position.
  • - In the energy range of 0.54 to 0.74 MeV, they detected 10,887 solar neutrinos from a total of 19,904 events, indicating a neutrino interaction rate consistent with standard solar model predictions.
  • - This groundbreaking measurement showcases the use of directional Cherenkov information in liquid scintillator detectors, paving the way for future hybrid methods that utilize both Cherenkov and scintillation signals in neutrino research.
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Ultrahigh energy cosmic ray air showers probe particle physics at energies beyond the reach of accelerators. Here we introduce a new method to test hadronic interaction models without relying on the absolute energy calibration, and apply it to events with primary energy 6-16 EeV (E_{CM}=110-170  TeV), whose longitudinal development and lateral distribution were simultaneously measured by the Pierre Auger Observatory. The average hadronic shower is 1.

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We measure the energy emitted by extensive air showers in the form of radio emission in the frequency range from 30 to 80 MHz. Exploiting the accurate energy scale of the Pierre Auger Observatory, we obtain a radiation energy of 15.8±0.

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Borexino is a liquid scintillation detector located deep underground at the Laboratori Nazionali del Gran Sasso (LNGS, Italy). Thanks to the unmatched radio purity of the scintillator, and to the well understood detector response at low energy, a new limit on the stability of the electron for decay into a neutrino and a single monoenergetic photon was obtained. This new bound, τ≥6.

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