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Prospects for extending the core-collapse supernova detection horizon using high-energy neutrinos

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arxiv 2206.00450 v2 pith:3U4AYNRV submitted 2022-06-01 astro-ph.HE hep-ex

classification astro-ph.HEhep-ex
keywords neutrinoscore-collapsehigh-energysupernovaedetectionicecubeneutrinoreach
verification ladder T0 review T1 audit T2 compute T3 formal
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Large neutrino detectors like IceCube monitor for core-collapse supernovae using low energy (MeV) neutrinos, with a reach to a supernova neutrino burst to the Magellanic Cloud. However, some models predict the emission of high energy neutrinos (GeV-TeV) from core-collapse supernovae through the interaction of ejecta with circumstellar material and (TeV-PeV) through choked jets. In this paper, we explore the detection horizon of IceCube for core-collapse supernovae using high-energy neutrinos from these models. We examine the potential of two high-energy neutrino data samples from IceCube, one that performs best in the northern sky and one that has better sensitivity in the southern sky. We demonstrate that by using high-energy neutrinos from core-collapse supernovae, the detection reach can be extended to the Mpc range, far beyond what is accessible through low-energy neutrinos. Looking ahead to IceCube-Gen2, this reach will be extended considerably.

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  1. Exploring the properties of newborn pulsars with high-energy neutrinos

    astro-ph.HE 2025-07 conditional novelty 5.0 of 10

    Neutrinos from newborn pulsar winds hitting supernova ejecta could be detected from a galactic source by IceCube if B/P^2 exceeds ~0.003, with parameter constraints and a detectable diffuse flux for next-generation te...

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