CNO and pep neutrino spectroscopy in Borexino: Measurement of the deep underground production of cosmogenic 11C in organic liquid scintillator
arXiv:hep-ex/0601035 · doi:10.1103/PhysRevC.74.045805
Abstract
Borexino is an experiment for low energy neutrino spectroscopy at the Gran Sasso underground laboratories. It is designed to measure the mono-energetic Be solar neutrino flux in real time, via neutrino-electron elastic scattering in ultra-pure organic liquid scintillator. Borexino has the potential to also detect neutrinos from the \emph{pep} fusion process and the CNO cycle. For this measurement to be possible, radioactive contamination in the detector must be kept extremely low. Once sufficiently clean conditions are met, the main background source is C, produced in reactions induced by the residual cosmic muon flux on C. In the process, a free neutron is almost always produced. C can be tagged on an event by event basis by looking at the three-fold coincidence with the parent muon track and the subsequent neutron capture on protons. This coincidence method has been implemented on the Borexino Counting Test Facility data. We report on the first event by event identification of \emph{in situ} muon induced C in a large underground scintillator detector. We measure a C production rate of 0.130 0.026 (stat) 0.014 (syst) day ton, in agreement with predictions from both experimental studies performed with a muon beam on a scintillator target and \emph{ab initio} estimations based on the C producing nuclear reactions.
6 pages, 5 figures, 2 tables
Cited by in corpus (18)
- New results on solar neutrino fluxes from 192 days of Borexino data
- The Borexino detector at the Laboratori Nazionali del Gran Sasso
- Final results of Borexino Phase-I on low energy solar neutrino spectroscopy
- First evidence of pep solar neutrinos by direct detection in Borexino
- Production of Radioactive Isotopes through Cosmic Muon Spallation in KamLAND
- Large underground, liquid based detectors for astro-particle physics in Europe: scientific case and prospects
- The Nylon Scintillator Containment Vessels for the Borexino Solar Neutrino Experiment
- Positronium signature in organic liquid scintillators for neutrino experiments
- A step toward CNO solar neutrinos detection in liquid scintillators
- A search for low-energy neutrinos correlated with gravitational wave events GW150914, GW151226 and GW170104 with the Borexino detector
- Multi-site Event Discrimination in Large Liquid Scintillation Detectors
- Feasibility and physics potential of detecting B solar neutrinos at JUNO
- SNO+: predictions from standard solar models and spin flavour precession
- Solar neutrino with Borexino: results and perspectives
- Advancements in solar neutrino physics
- Signatures of muonic activation in the Majorana Demonstrator
- Study of Cosmogenic Neutron Backgrounds at LNGS
- New Signal of Atmospheric Tau Neutrino Appearance: Sub-GeV Neutral-Current Interactions in JUNO