arXiv · hep-ph/9609241
Effects of Neutrino Oscillation on the Supernova Relic Neutrino Background
Abstract
We investigate to what extent the oscillation or conversion of neutrinos enhances the expected event rate of the supernova relic neutrino background (SRN) at the Super-Kamiokande detector (SK). The SRN \barν_e's can be almost completely exchanged with ν_μ-like neutrinos by the MSW oscillation under the inverse mass hierarchy with Δm^2 ~ 10^{-8}--10^5 [eV^2], or by the magnetic moment of Majorana neutrinos with μ_ν>~ 10^{-12} μ_B and Δm^2 ~ 10^{-4}--10^0 [eV^2]. In the standard calculation of the SRN flux, the event rate of the SRN \barν_e's at the SK in the observable energy range of 15--40 MeV can be enhanced from 1.2 yr^{-1} to 2.4 yr^{-1} if all \barν_e's are exchanged with ν_μ-like neutrinos. The enhancement is prominent especially in the high energy range (\gtilde 25 MeV). In the astrophysically optimistic calculation, the event rate becomes as high as 9.4 yr^{-1}. Because the theoretical upper bound of the SRN events without oscillation is about 5 yr^{-1} taking account of the various astrophysical uncertainties, we might have to resort to the neutrino oscillation if more than 5 events in a year, as well as a significantly harder spectrum, were observed in the SK.
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Tomonori Totani, Katsuhiko Sato. 1996-09-04. Effects of Neutrino Oscillation on the Supernova Relic Neutrino Background. https://doi.org/10.1142/s0218271896000321
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