Final results of Borexino Phase-I on low energy solar neutrino spectroscopy
Borexino Collaboration:G. Bellini, J. Benziger, D. Bick, G. Bonfini,, D. Bravo, M. B. Avanzini, B. Caccianiga, L. Cadonati, F. Calaprice, P., Cavalcante, A. Chavarria, A. Chepurnov, D. D'Angelo, S. Davini, A. Derbin, A., Empl, A. Etenko, K. Fomenko, D. Franco, C. Galbiati

TL;DR
Borexino Phase-I successfully detected and measured low-energy solar neutrinos, including 7Be and pep neutrinos, providing insights into neutrino fluxes, oscillations, and solar models with unprecedented low background levels.
Contribution
This work presents the first precise measurement of 7Be and pep solar neutrinos using Borexino's low-background liquid scintillator detector, including the observation of annual modulation.
Findings
Detected and measured 7Be solar neutrino flux.
First direct observation of pep neutrinos.
Set upper limit on CNO neutrino flux.
Abstract
Borexino has been running since May 2007 at the LNGS with the primary goal of detecting solar neutrinos. The detector, a large, unsegmented liquid scintillator calorimeter characterized by unprecedented low levels of intrinsic radioactivity, is optimized for the study of the lower energy part of the spectrum. During the Phase-I (2007-2010) Borexino first detected and then precisely measured the flux of the 7Be solar neutrinos, ruled out any significant day-night asymmetry of their interaction rate, made the first direct observation of the pep neutrinos, and set the tightest upper limit on the flux of CNO neutrinos. In this paper we discuss the signal signature and provide a comprehensive description of the backgrounds, quantify their event rates, describe the methods for their identification, selection or subtraction, and describe data analysis. Key features are an extensive in situ…
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