Magnetic Turbulence Boosts Supernova Signals of Axion-Photon Conversion

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Main Authors: Fiorillo, Damiano F. G., Muyor, Ángel Gil, Raffelt, Georg G., Vitagliano, Edoardo
Format: Preprint
Published: 2026
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author Fiorillo, Damiano F. G.
Muyor, Ángel Gil
Raffelt, Georg G.
Vitagliano, Edoardo
author_facet Fiorillo, Damiano F. G.
Muyor, Ángel Gil
Raffelt, Georg G.
Vitagliano, Edoardo
contents Magnetic fields between a supernova (SN) and Earth convert axions into gamma rays. The absence of such a signal in coincidence with SN 1987A neutrinos, using the coherent Milky Way field, provides well-studied constraints on $g_{ap}\times g_{aγ}$ (axion-proton times axion-photon couplings) and on $g_{aγ}$ alone. We show that the small-scale power of the turbulent magnetic field component boosts axion-photon conversion and, crucially, extends sensitivity to larger masses. The turbulent field components of the Milky Way and of the Large Magellanic Cloud (hosting SN 1987A) yield improvements of up to two orders of magnitude in $g_{ap}\times g_{aγ}$. Turbulence should likely impact the sensitivity of other searches based on other axion-photon conversion sites, such as starburst galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2605_15261
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Magnetic Turbulence Boosts Supernova Signals of Axion-Photon Conversion
Fiorillo, Damiano F. G.
Muyor, Ángel Gil
Raffelt, Georg G.
Vitagliano, Edoardo
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
Magnetic fields between a supernova (SN) and Earth convert axions into gamma rays. The absence of such a signal in coincidence with SN 1987A neutrinos, using the coherent Milky Way field, provides well-studied constraints on $g_{ap}\times g_{aγ}$ (axion-proton times axion-photon couplings) and on $g_{aγ}$ alone. We show that the small-scale power of the turbulent magnetic field component boosts axion-photon conversion and, crucially, extends sensitivity to larger masses. The turbulent field components of the Milky Way and of the Large Magellanic Cloud (hosting SN 1987A) yield improvements of up to two orders of magnitude in $g_{ap}\times g_{aγ}$. Turbulence should likely impact the sensitivity of other searches based on other axion-photon conversion sites, such as starburst galaxies.
title Magnetic Turbulence Boosts Supernova Signals of Axion-Photon Conversion
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2605.15261