English

SN 2023ixf in M101: physical parameters from bolometric light curve modeling

High Energy Astrophysical Phenomena 2025-08-12 v1 Solar and Stellar Astrophysics

Abstract

We present new photometric observations of the core-collapse supernova SN 2023ixf occurred in M101, taken with the RC80 and BRC80 robotic telescopes in Hungary. The initial nickel mass from the late-phase bolometric light curve extending up to 400 days after explosion, is inferred as MNi=0.046±0.007M_{\rm Ni} = 0.046 \pm 0.007 M_\odot. The comparison of the bolometric light curve with models from hydrodynamical simulations as well as semi-analytic radiative diffusion codes reveals a relatively low-mass ejecta of Mej9M_{\rm ej} \lesssim 9 M_\odot, contrary to SN~2017eaw, another H-rich core-collapse event, which had Mej15M_{\rm ej} \gtrsim 15 M_\odot.

Keywords

Cite

@article{arxiv.2508.06654,
  title  = {SN 2023ixf in M101: physical parameters from bolometric light curve modeling},
  author = {J. Vinko and Zs. R. Bodola and A. Godeny and Sz. F. Csak and R. Konyves-Toth and A. P. Nagy and T. Szalai and D. Banhidi and I. B. Biro and A. Bodi and Zs. Bora and I. Csanyi and B. Cseh and T. Hegedus and A. Horti-David and A. P. Joo and Cs. Kalup and L. Kriskovics and E. Mochnacs and A. Pal and Zs. Regaly and B. Seli and A. Sodor and N. O. Szabo and R. Szakats and P. Szekely and V. Varga and K. Vida},
  journal= {arXiv preprint arXiv:2508.06654},
  year   = {2025}
}

Comments

submitted to ApJ