Simultaneous Precision Spectroscopy of $pp$, $^7$Be, and $pep$ Solar Neutrinos with Borexino Phase-II
M. Agostini, K. Altenmuller, S. Appel, V. Atroshchenko, Z., Bagdasarian, D. Basilico, G. Bellini, J. Benziger, D. Bick, G. Bonfini, D., Bravo, B. Caccianiga, F. Calaprice, A. Caminata, S. Caprioli, M. Carlini, P., Cavalcante, A. Chepurnov, K. Choi, L. Collica, D. D'Angelo

TL;DR
This paper reports the first simultaneous measurement of multiple solar neutrino interaction rates using Borexino Phase-II data, achieving high precision and setting new limits on CNO neutrino flux, advancing solar neutrino research.
Contribution
It provides the first simultaneous measurement of $pp$, $^7$Be, and $pep$ solar neutrinos with improved precision and new constraints on CNO neutrinos, using an extended energy range and extensive data analysis.
Findings
Measured $pp$ neutrino rate with 10 cp/d/100t uncertainty.
Achieved 2.7% precision on $^7$Be neutrino rate.
Set a 95% C.L. upper limit on CNO neutrino rate at 8.1 cp/d/100t.
Abstract
We present the first simultaneous measurement of the interaction rates of , Be, and solar neutrinos performed with a global fit to the Borexino data in an extended energy range (0.19-2.93)MeV. This result was obtained by analyzing 1291.51days of Borexino Phase-II data, collected between December 2011 and May 2016 after an extensive scintillator purification campaign. We find: rate()=()()cpd/100t, rate(Be)=()()cpd/100t, and rate()=()()cpd/100t. These numbers are in agreement with and improve the precision of our previous measurements. In particular, the interaction rate of Be 's is measured with an…
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