English

Calibrating Eruptive Mass Loss in Red Supergiants with Local Group Data

Solar and Stellar Astrophysics 2026-05-15 v2

Abstract

We calibrate a physically motivated, super-Eddington eruptive mass-loss prescription for red supergiants (RSGs) using Local Group stellar populations. Building on MESA models that add eruptive mass loss with a free scaling parameter ξ\xi, we generate stellar evolution tracks and isochrones, and synthesize mock populations at metallicities of Z/Z=0.2, 0.4Z/Z_\odot=0.2,\ 0.4, and 1.01.0. We compare model luminosity functions to observations of RSGs in the SMC, LMC, and M31, restricting to 3.5<logTeff/K<3.753.5<\log T_{\rm eff}/K<3.75 and log(L/L)>4.5\log(L/L_\odot)>4.5. By-eye fits to the observations yield values of ξSMC=0.00.05\xi_\mathrm{SMC}=0.0-0.05, ξLMC=0.1\xi_\mathrm{LMC}=0.1, and ξM31=0.35\xi_\mathrm{M31}=0.35, implying a positive, linear trend between the strength of eruptive mass-loss and metallicity. This calibrated eruptive mass loss prevents stars with initial masses 20 M\gtrsim 20~M_\odot from evolving to become red supergiants, with implications for the mass spectrum of core-collapse progenitors, compact remnants, early supernova interaction signatures, and the spectral energy distributions of unresolved galaxies.

Keywords

Cite

@article{arxiv.2603.00231,
  title  = {Calibrating Eruptive Mass Loss in Red Supergiants with Local Group Data},
  author = {Shelley J. Cheng and Charlie Conroy and Jared A. Goldberg},
  journal= {arXiv preprint arXiv:2603.00231},
  year   = {2026}
}

Comments

12 pages, 6 figures, accepted to ApJ