English

Bounds on axion-like particles from the diffuse supernova flux

High Energy Physics - Phenomenology 2020-12-03 v2 High Energy Astrophysical Phenomena

Abstract

The cumulative emission of Axion-Like Particles (ALPs) from all past core-collapse supernovae (SNe) would lead to a diffuse flux with energies O(50){\mathcal O}(50) MeV. We use this to constrain ALPs featuring couplings to photons and to nucleons. ALPs coupled only to photons are produced in the SN core via the Primakoff process, and then converted into gamma rays in the Galactic magnetic field. We set a bound on gaγ5×1010 GeV1g_{a\gamma} \lesssim 5 \times 10^{-10}~{\rm GeV}^{-1} for ma1011 eVm_a \lesssim 10^{-11}~{\rm eV}, using recent measurements of the diffuse gamma-ray flux observed by the Fermi-LAT telescope. However, if ALPs couple also with nucleons, their production rate in SN can be considerably enhanced due to the ALPs nucleon-nucleon bremsstrahlung process. Assuming the largest ALP-nucleon coupling phenomenologically allowed, bounds on the diffuse gamma-ray flux lead to a much stronger gaγ6×1013 GeV1g_{a\gamma} \lesssim 6 \times 10^{-13}~{\rm GeV}^{-1} for the same mass range. If ALPs are heavier than \sim keV, the decay into photons becomes significant, leading again to a diffuse gamma-ray flux. In the case of only photon coupling, we find, e.g. gaγ5×1011 GeV1g_{a\gamma} \lesssim 5 \times 10^{-11}~{\rm GeV}^{-1} for ma5 keVm_a \sim 5~{\rm keV}. Allowing for a (maximal) coupling to nucleons, the limit improves to the level of gaγ1019 GeV1g_{a\gamma} \lesssim 10^{-19}~{\rm GeV}^{-1} for ma20 MeVm_a \sim 20~{\rm MeV}, which represents the strongest constraint to date.

Keywords

Cite

@article{arxiv.2008.11741,
  title  = {Bounds on axion-like particles from the diffuse supernova flux},
  author = {Francesca Calore and Pierluca Carenza and Maurizio Giannotti and Joerg Jaeckel and Alessandro Mirizzi},
  journal= {arXiv preprint arXiv:2008.11741},
  year   = {2020}
}

Comments

12 pages, 7 figures. v2: minor changes to match the published version

R2 v1 2026-06-23T18:07:30.368Z