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Detecting Neutrinos from Supernova Bursts in PandaX-4T

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arxiv 2403.06220 v1 pith:HD67PHOC submitted 2024-03-10 hep-ex physics.ins-det

classification hep-exphysics.ins-det
keywords supernovaneutrinosdetectingneutrinopandax-4talarmsexplosionsmonitoring
verification ladder T0 review T1 audit T2 compute T3 formal
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Neutrinos from core-collapse supernovae are essential for the understanding of neutrino physics and stellar evolution. The dual-phase xenon dark matter detectors can provide a way to track explosions of galactic supernovae by detecting neutrinos through coherent elastic neutrino-nucleus scatterings. In this study, a variation of progenitor masses as well as explosion models are assumed to predict the neutrino fluxes and spectra, which result in the number of expected neutrino events ranging from 6.6 to 13.7 at a distance of 10 kpc over a 10-second duration with negligible backgrounds at PandaX-4T. Two specialized triggering alarms for monitoring supernova burst neutrinos are built. The efficiency of detecting supernova explosions at various distances in the Milky Way is estimated. These alarms will be implemented in the real-time supernova monitoring system at PandaX-4T in the near future, providing the astronomical communities with supernova early warnings.

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