arXiv:hep-ph/0607155·v1·High Energy Physics — Phenomenology
Precision measurement of solar neutrino oscillation parameters by a long-baseline reactor neutrino experiment in Europe
S.T. Petcov🇮🇹 · T. Schwetz🇮🇹
Abstract
We consider the determination of the solar neutrino oscillation parameters and by studying oscillations of reactor anti-neutrinos emitted by nuclear power plants (located mainly in France) with a detector installed in the Frejus underground laboratory. The performances of a water Cerenkov detector of 147 kt fiducial mass doped with 0.1% of Gadolinium (MEMPHYS-Gd) and of a 50 kt scale liquid scintillator detector (LENA) are compared. In both cases 3 uncertainties below 3% on and of about 20% on can be obtained after one year of data taking. The Gadolinium doped Super-Kamiokande detector (SK-Gd) in Japan can reach a similar precision if the SK/MEMPHYS fiducial mass ratio of 1 to 7 is compensated by a longer SK-Gd data taking time. Several years of reactor neutrino data collected by MEMPHYS-Gd or LENA would allow a determination of and with uncertainties of approximately 1% and 10% at 3, respectively. These accuracies are comparable to those that can be reached in the measurement of the atmospheric neutrino oscillation parameters and in long-baseline superbeam experiments.
Comments: 16 pages, 6 figures