The Borexino detector at the Laboratori Nazionali del Gran Sasso

@article{Alimonti2009TheBD,
  title={The Borexino detector at the Laboratori Nazionali del Gran Sasso},
  author={Borexino Collaboration G. Alimonti and et al.},
  journal={Nuclear Instruments \& Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment},
  year={2009},
  volume={600},
  pages={568-593}
}

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The Borexino solar neutrino experiment and its scintillator containment vessel

Thirty years ago, the rst solar neutrino detector proved fusion reactions power the Sun. However, the total rate detected in this and all subsequent solar neutrino experiments is consistently two to

Borexino Collaboration

The Borexino detector measures solar neutrino fluxes via neutrino-electron elastic scattering. Observed spectra are determined by the solar-νe survival probability Pee(E), and the chiral couplings of

The Borexino nylon film and the third counting test facility

The Borexino solar neutrino detector should begin operations in late 2006. This scintillationbased detector will observe low-energy neutrinos, in real time, down to about 250 keV. The experiment

Low background techniques and experimental challenges for Borexino and its nylon vessels

Neutrino physics has seen exciting developments over the past five years, following the experimental evidence of their oscillations in the atmospheric and solar sectors; precise measurements of

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Low background techniques for the Borexino nylon vessels

Borexino is an organic liquid scintillator underground detector for low energy solar neutrinos. The experiment has to satisfy extremely stringent low background requirements. The thin nylon spherical

Identification of Muon-Induced Signals in the Deep Underground Neutrino-Scintillation-Detector BOREXINO

The improvements of the last years on the field of neutrino physics have significantly sharpen our knowledge of the neutrino properties. The solar neutrino experiment Borexino will allow measuring
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