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Probing a diffuse flux of axion-like particles from galactic supernovae with neutrino water Cherenkov detectors

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arxiv 2412.09595 v4 pith:UT3WGV46 submitted 2024-12-12 hep-ph astro-ph.CO

Probing a diffuse flux of axion-like particles from galactic supernovae with neutrino water Cherenkov detectors

classification hep-ph astro-ph.CO
keywords abovealp-protonalpsaxion-likeboundscherenkovcoolingcouplings
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this article, we claim that axion-like particles (ALPs) with MeV masses can be produced with semi-relativistic velocities in core-collapse supernovae (SNe), generating a diffuse galactic flux. We show that these ALPs can be detected in neutrino water Cherenkov detectors via $a \, p \rightarrow p \, \gamma$ interactions. Using Super-Kamiokande data, we derive new constraints on the ALP parameter space, excluding a region spanning one order of magnitude in the ALP-proton coupling above cooling bounds for ALP masses in the range of $1-70$~MeV and ALP-proton couplings between $\sim 2\times10^{-5}-2\times10^{-4}$. We show that the future Hyper-Kamiokande will be able to probe couplings as small as $\sim 10^{-5}$, considerably constraining the allowed region above SN 1987A cooling bounds.

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  1. MeV Electrophilic Axion-like Particles from Sun

    hep-ph 2026-07 conditional novelty 6.0

    MeV axion-like particles could be made when 5.5 MeV solar fusion photons Compton-scatter off electrons; current LZ, PandaX-4T and Borexino data would then constrain g_ae to (1.7-3.7)e-6 in the 0.4-1 MeV window.