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Exploring the Fate of Stellar Core Collapse with Supernova Relic Neutrinos

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arxiv 2204.04880 v2 pith:3BBWDZGD submitted 2022-04-11 astro-ph.HE hep-ph

Exploring the Fate of Stellar Core Collapse with Supernova Relic Neutrinos

classification astro-ph.HE hep-ph
keywords collapsecoredifferentneutrinosstellarsupernovafatefluxes
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Core collapse of massive stars leads to different fates for various physical factors, which gives different spectra of the emitted neutrinos. We focus on the supernova relic neutrinos (SRNs) as a probe to investigate the stellar collapse fate. We present the SRN fluxes and event rate spectra at a detector for three resultant states after stellar core collapse, the typical mass neutron star, the higher mass neutron star, or the failed supernova forming a black hole, based on different nuclear equations of state. Then possible SRN fluxes are formed as mixtures of the three components. We also show the expected sensitivities at the next-generation water-based Cherenkov detectors, SK-Gd and Hyper-Kamiokande, as constraining the mixture fractions. This study provides a practical example of extracting astrophysical constraints through SRN measurement.

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    Paleodetectors can reach burst-like Galactic core-collapse activity of several tens of supernovae at 10 pc, with sensitivity enhanced by high-mass NS and failed-SN neutrino emission that depends on the nuclear EOS.