Probing the neutrino mass hierarchy and the 13-mixing with supernovae
C. Lunardini, A. Yu. Smirnov
Abstract
We consider in details the effects of the 13-mixing (sin2 theta13) and of the type of mass hierarchy/ordering (sign[ Delta m213]) on neutrino signals from the gravitational collapses of stars. The observables (characteristics of the energy spectra of nue and antinue events) sensitive to sin2 theta13 and sign[Delta m213] have been calculated. They include the ratio of average energies of the spectra, rE = <E>/< E >, the ratio of widths of the energy distributions, rGamma, the ratios of total numbers of nue and antinue events at low energies, S, and in the high energy tails, Rtail. We construct and analyze scatter plots which show the predictions for the observables for different intervals of sin2 theta13 and signs of Delta m213, taking into account uncertainties in the original neutrino spectra, the star density profile, etc.. Regions in the space of observables rE, rGamma, S, Rtail exist in which certain mass hierarchy and intervals of sin2 theta13 can be identified or discriminated. We elaborate on the method of the high energy tails in the spectra of events. The conditions are formulated for which sin2 theta13 can be (i) measured, (ii) restricted from below, (iii) restricted from above. We comment on the possibility to determine sin2 theta13 using the time dependence of the signals due to the propagation of the shock wave through the resonance layers of the star. We show that the appearance of the delayed Earth matter effect in one of the channels (nue or antinue) in combination with the undelayed effect in the other channel will allow to identify the shock wave appeareance and determine the mass hierarchy.
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