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Optimizing the potential of KM3NeT in detecting core-collapse supernovae

    • University of Florence
    • Sezione di Firenze
    • Institut de Recherches Subatomiques
    • University of Haute Alsace
    • Department of Physics
    • CPPM
    • INFN
    • Universitat Politécnica de Catalunya
    • Université de Nantes
    • Universidad Politecnica de Valencia
    • Université de Paris
    • Università degli Studi di Genova
    • Sezione di Genova
    • Ensicaen
    • Sezione di Napoli
    • Sezione di Bologna
    • University of Bologna
    • Second University of Naples
    • University of Hull
    • Comenius University
    • NIKHEF
    • Sezione di Catania
    • North-West University
    • Universite de Annaba
    • Faculte des Sciences
    • University of Salerno
    • Università di Napoli 'Federico II' and Sezione INFN
    • TNO Bldg. and Construction Research

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Core-collapse supernovae mark the end of life of massive stars. However, despite their importance in astrophysics, their underlying mechanisms remain unclear. Neutrinos that emerge from the dense core of the star offer a promising way to study supernova dynamics. A strategy is presented to improve the potential of the KM3NeT neutrino telescope to detect core-collapse supernovae in our Galaxy or the Large Magellanic Cloud by further exploiting the properties of its optical modules equipped with multiple photomultipliers. A supernova burst is expected to produce a sudden hit rate increase in the KM3NeT detectors, which could be used to detect a supernova even in the absence of triggers from other experiments. New observables have been defined for individual optical modules that exploit the geometry and time distribution of the detected hits, enabling a better discrimination between signal and background signatures. In addition, a thorough investigation of the related systematic uncertainties is presented for the first time. When implemented, this new methodology allowed KM3NeT to probe 46% more Galactic core-collapse supernova candidates than with the previous trigger strategy, reaching the dense Galactic bulge. It is now expected that, once completed, KM3NeT will achieve full Galactic sensitivity to core-collapse supernovae independently from other experiments.

    Original languageBritish English
    Article number038
    JournalJournal of Cosmology and Astroparticle Physics
    Volume2026
    Issue number4
    DOIs
    StatePublished - 1 Apr 2026

    Keywords

    • core-collapse supernovae
    • neutrino astronomy
    • neutrino detectors
    • supernova neutrinos

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