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Exploiting a future galactic supernova to probe neutrino magnetic moments

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arxiv 2203.01950 v1 pith:SBOYXMO2 submitted 2022-03-03 hep-ph astro-ph.HEastro-ph.SRhep-ex

classification hep-phastro-ph.HEastro-ph.SRhep-ex
keywords neutrinomagneticmomentsastrophysicalburstexperimentsgalacticneutrinos
verification ladder T0 review T1 audit T2 compute T3 formal
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A core-collapse supernova (SN) offers an excellent astrophysical laboratory to test non-zero neutrino magnetic moments. In particular, the neutronization burst phase, which lasts for few tens of milliseconds post-bounce, is dominated by electron neutrinos and can offer exceptional discovery potential for transition magnetic moments. We simulate the neutrino spectra from the burst phase in forthcoming neutrino experiments like the Deep Underground Neutrino Experiment (DUNE), and the Hyper-Kamiokande (HK), by taking into account spin-flavour conversions of SN neutrinos, caused by interactions with ambient magnetic fields. We find that the neutrino transition magnetic moments which can be explored by these experiments for a galactic SN are an order to several orders of magnitude better than the current terrestrial and astrophysical limits. Additionally, we also discuss how this realization might shed light on three important neutrino properties: (a) the Dirac/Majorana nature, (b) the neutrino mass ordering, and (c) the neutrino mass-generation mechanism.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Decoupling Neutrino Magnetic Moment from Mass with $SU(2)_L$ Invariance

    hep-ph 2025-06 reject novelty 7.0 of 10

    A loop-level neutrino magnetic moment is generated via an SU(2)_L adjoint fermion 'bridge', making the mass diagram vanish by tracelessness of the generators, though RG mixing limits the observable size.

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