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AbstractAbstract
[en] The neutrino long wavelength (just-so) oscillation is reexamined as a solution to the solar neutrino problem. We consider the just-so scenario in various cases: in the framework of the solar models with a relaxed prediction of the boron neutrino flux, as well as in the presence of the nonstandard weak range interactions between neutrino and matter constituents. We show that the fit of the experimental data in the just-so scenario is not very good for any reasonable value of the 8B neutrino flux, but it substantially improves if the nonstandard τ-neutrino--electron interaction is included. These new interactions could also remove the conflict of the just-so picture with the shape of the SN 1987A neutrino spectrum. Special attention is devoted to the potential of the future real-time solar neutrino detectors such as Super-Kamiokande, SNO, and BOREXINO, which could provide the model-independent tests for the just-so scenario. In particular, these imply a specific deformation of the original solar neutrino energy spectra and time variation of the intermediate energy monochromatic neutrino (7Be and pep) signals
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BERYLLIUM ISOTOPES, BETA DECAY RADIOISOTOPES, BETA-PLUS DECAY RADIOISOTOPES, BORON ISOTOPES, DAYS LIVING RADIOISOTOPES, ELECTRON CAPTURE RADIOISOTOPES, ELEMENTARY PARTICLES, EVEN-ODD NUCLEI, FERMIONS, HEAVY LEPTONS, INTERACTIONS, ISOTOPES, LEPTON-LEPTON INTERACTIONS, LEPTONS, LIGHT NUCLEI, MASSLESS PARTICLES, NEUTRINOS, NUCLEI, ODD-ODD NUCLEI, PARTICLE INTERACTIONS, RADIATIONS, RADIOISOTOPES, SOLAR PARTICLES, SOLAR RADIATION, SPECTRA, STELLAR RADIATION
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