Sterile neutrinos and supernova nucleosynthesis

Abstract
A light sterile neutrino species has been introduced to explain simultaneously the solar and atmospheric neutrino puzzles and the results of the LSND experiment, while providing for a hot component of dark matter. Employing this scheme of neutrino masses and mixings, we show how matter-enhanced active-sterile (νμ,τνs) neutrino transformation followed by active-active (νμ,τνe) neutrino transformation can solve robustly the neutron deficit problem encountered by models of rprocess nucleosynthesis associated with neutrino-heated supernova ejecta.

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