arXiv:2509.18253·v3·High Energy Physics — Phenomenology
Small Progenitors, Large Couplings: Type Ic Supernova Constraints on Radiatively Decaying Particles
Francisco R. Candón🇩🇪 · Damiano F. G. Fiorillo🇩🇪 · Hans-Thomas Janka🇩🇪 · Bart F. A. van Baal🇸🇪 · Edoardo Vitagliano🇮🇹
Abstract
Supernova (SN) 1987A provides classic bounds on gamma-ray flashes from the radiative decay of sub-GeV particles, but the latter may decay so rapidly as to be shielded by the stellar envelope. Using axionlike particles with photon coupling as a benchmark, we show that Type Ic core-collapse supernovae largely evade this attenuation due to their compact progenitors. We identify two regimes. At small couplings, while individual flashes may be missed by Fermi-LAT, the high Type Ic rate enables a stacking analysis of nondetections. At larger couplings, decay photons trigger fireball formation; the absence of a signal from the rare broad-lined Type Ic SN 1998bw excludes this scenario. The resulting bounds significantly exceed those from SN 1987A for short decay lengths.
Comments: 8 pages, 3 figures; Supplemental Material: 8 pages, 5 figures. Updated to match the published version