Seasonal variations of the 7Be solar neutrino flux
Abstract
Measuring the 7Be solar neutrino flux is crucial towards solving the solar neutrino puzzle. The Borexino experiment, and possibly the KamLAND experiment, will be capable of studying the 7Be neutrinos in the near future. We discuss (1) how the seasonal variation of the Borexino and KamLAND data can be used to measure the 7Be solar neutrino flux in a background independent way and (2) how anomalous seasonal variations might be used to discover vacuum neutrino oscillations, independent of the solar model and the measurement of the background. In particular, we find that, after three years of Borexino or KamLAND running, vacuum neutrino oscillations can be either established or excluded for almost all values of (sin2 2θ,Δm2) preferred by the Homestake, GALLEX, SAGE, and Super-Kamiokande data. We also discuss how well seasonal variations of the data can be used to measure (sin2 2θ,Δm2) in the case of vacuum oscillations.
- Publication:
-
Physical Review D
- Pub Date:
- November 1999
- DOI:
- 10.1103/PhysRevD.60.093011
- arXiv:
- arXiv:hep-ph/9904399
- Bibcode:
- 1999PhRvD..60i3011D
- Keywords:
-
- 14.60.Pq;
- 13.15.+g;
- 26.65.+t;
- Neutrino mass and mixing;
- Neutrino interactions;
- Solar neutrinos;
- High Energy Physics - Phenomenology;
- Astrophysics;
- High Energy Physics - Experiment;
- Nuclear Experiment
- E-Print:
- 39 pages, 13 figures, uses psfig. Now the impact of the MSW effect on vacuum oscillations taken into account. Conclusions unchanged. References added