Observations suggest that γ-ray bursts (GRBs) are produced by the dissipation of the kinetic energy of a relativistic fireball. We show that a large fraction, ≥10%, of the fireball energy is expected to be converted by photomeson production to a burst of ~10¹⁴eV neutrinos. A km² neutrino detector would observe at least several tens of events per year correlated with GRBs, and test for neutrino properties (e.g., flavor oscillations, for which upward moving τ's would be a unique signature, and coupling to gravity) with an accuracy many orders of magnitude better than is currently possible.
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Waxman et al. (1997) studied this question.
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