Mikheyev-Smirnov-Wolfenstein enhancement of oscillations as a possible solution to the solar-neutrino problem
Abstract
Mikheyev and Smirnov have observed that neutrino oscillations in the Sun can be greatly enhanced through the mechanism of Wolfenstein matter oscillations. We develop a qualitative understanding of this phenomenon in the small-mixing-angle limit and carry out extensive calculations in order to apply it to the solar-neutrino problem. Our simple theoretical model agrees remarkably well with the calculations. After determining those values of Δm2 and sin22theta in the small-mixing-angle limit for which the 8B plus 7Be neutrino capture rate in 37Cl is suppressed by a factor 2-4, we predict the corresponding capture rate for pp plus 7Be neutrinos in 71Ga. The gallium capture rate can range from no reduction to a factor of 10 reduction. We also determine the modified spectrum of 8B neutrinos arriving at Earth and discuss the importance of this spectrum as a means of choosing between oscillations and the solar model as the cause of the solar-neutrino problem, and also as a means of distinguishing between different sets of oscillation parameters.
- Publication:
-
Physical Review D
- Pub Date:
- August 1986
- DOI:
- 10.1103/PhysRevD.34.969
- Bibcode:
- 1986PhRvD..34..969R
- Keywords:
-
- 96.60.Kx;
- 12.15.Ff;
- 14.60.Gh;
- Quark and lepton masses and mixing