Bayesian Constraints on theta_{13} from Solar and KamLAND Neutrino Data
Abstract
We present the results of a Bayesian analysis of solar and KamLAND neutrino data in the framework of three-neutrino mixing. We adopt two approaches for the prior probability distribution of the oscillation parameters Delta m^2_{21}, sin^2 theta_{12}, sin^2 theta_{13}: 1) a traditional flat uninformative prior; 2) an informative prior which describes the limits on sin^2 theta_{13} obtained in atmospheric and long-baseline accelerator and reactor neutrino experiments. In both approaches, we present the allowed regions in the sin^2 theta_{13} - Delta m^2_{21} and sin^2 theta_{12} - sin^2 theta_{13} planes, as well as the marginal posterior probability distribution of sin^2 theta_{13}. We confirm the 1.2 sigma hint of theta_{13} > 0 found in hep-ph/0806.2649 from the analysis of solar and KamLAND neutrino data. We found that the statistical significance of the hint is reduced to about 0.8 sigma by the constraints on sin^2 theta_{13} coming from atmospheric and long-baseline accelerator and reactor neutrino data, in agreement with arXiv:0808.2016.
Keywords
Cite
@article{arxiv.0810.5443,
title = {Bayesian Constraints on theta_{13} from Solar and KamLAND Neutrino Data},
author = {H. L. Ge and C. Giunti and Q. Y. Liu},
journal= {arXiv preprint arXiv:0810.5443},
year = {2010}
}
Comments
21 pages. Final version published in Phys. Rev. D 80 (2009) 053009