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Supernova Bounds on Resonant Active-Sterile Neutrino Conversions

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arxiv hep-ph/9702372 v2 pith:SKLP7SF4 submitted 1997-02-19 hep-ph astro-ph

classification hep-phastro-ph
keywords neutrinosupernovaconversionsmassnucleosynthesisr-processresonantsterile
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abstract

We discuss the effects of resonant $\nu_e \to \nu_s$ and $\bar{\nu}_e \to \bar{\nu}_s$ ($\nu_s$ is a sterile neutrino) conversions in the dense medium of a supernova. In particular, we assume the sterile neutrino $\nu_s$ to be in the hot dark matter few eV mass range. The implications of such a scenario for the supernova shock re-heating, the detected $\bar\nu_e$ signal from SN1987A and for the r-process nucleosynthesis hypothesis are analysed in some detail. The resulting constraints on mixing and mass difference for the $\nu_e-\nu_s$ system are derived. There is also an allowed region in the neutrino parameter space for which the r-process nucleosynthesis can be enhanced.

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  1. Heating the dark matter halo with dark radiation from supernovae

    hep-ph 2024-11 conditional novelty 6.0 of 10

    Even a few parts per million of supernova energy emitted as dark radiation could transform cuspy dwarf dark matter halos into cored ones, and observed core sizes bound how much energy can go to new particles.

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