English

No axion-like particles from core-collapse supernovae?

High Energy Astrophysical Phenomena 2018-03-09 v2 High Energy Physics - Phenomenology

Abstract

A strong bound on the properties of axion-like particles (ALPs) has been set by assuming that ALPs are emitted by the protoneutron star just before the core-bounce in Galactic core-collapse supernovae, and that these ALPs subsequently convert to γ\gamma-ray photons which ought to be detected by a γ\gamma-ray mission. This argument has been applied to supernova 1987A to derive the bound on the ALP-photon coupling gaγγ5.31012GeV1g_{a \gamma \gamma} \lesssim 5.3 \cdot 10^{- 12} \, {\rm GeV}^{- 1} for an ALP mass ma4.41010eVm_a \lesssim 4.4 \cdot 10^{- 10} \, {\rm eV}, and can be applied to the next Galactic supernova to derive the even stronger bound gaγγ21013GeV1g_{a \gamma \gamma} \lesssim 2 \cdot 10^{- 13} \, {\rm GeV}^{- 1} for an ALP mass ma109eVm_a \lesssim 10^{- 9} \, {\rm eV}. We carefully analyze the considered ALP production mechanism and find that it is oversimplified to an unacceptable extent. By taking into account the minimal ingredients required by a realistic analysis, we conclude that the previous results are doomed to failure. As a consequence, all papers quoting the above bound should be properly revised. Yet, since we are unable to rule out the possibility that protoneutron stars emit ALPs, in case a core-collapse supernova explodes in the Galaxy the γ\gamma-ray satellite missions active at that time should look for photons possibly coming from the supernova.

Keywords

Cite

@article{arxiv.1712.06205,
  title  = {No axion-like particles from core-collapse supernovae?},
  author = {Ignazio Bombaci and Giorgio Galanti and Marco Roncadelli},
  journal= {arXiv preprint arXiv:1712.06205},
  year   = {2018}
}

Comments

6 pages, 1 figure, revised version

R2 v1 2026-06-22T23:20:56.096Z