English

A non-equipartition shockwave traveling in a dense circumstellar environment around SN2020oi

High Energy Astrophysical Phenomena 2020-11-18 v1

Abstract

We report the discovery and panchromatic followup observations of the young Type Ic supernova, SN2020oi, in M100, a grand design spiral galaxy at a mere distance of 1414 Mpc. We followed up with observations at radio, X-ray and optical wavelengths from only a few days to several months after explosion. The optical behaviour of the supernova is similar to those of other normal Type Ic supernovae. The event was not detected in the X-ray band but our radio observation revealed a bright mJy source (Lν1.2×1027ergs1Hz1L_{\nu} \approx 1.2 \times 10^{27} {\rm erg\,s}^{-1} {\rm Hz}^{-1}). Given, the relatively small number of stripped envelope SNe for which radio emission is detectable, we used this opportunity to perform a detailed analysis of the comprehensive radio dataset we obtained. The radio emitting electrons initially experience a phase of inverse Compton cooling which leads to steepening of the spectral index of the radio emission. Our analysis of the cooling frequency points to a large deviation from equipartition at the level of ϵe/ϵB200\epsilon_e/\epsilon_B \gtrsim 200, similar to a few other cases of stripped envelope SNe. Our modeling of the radio data suggests that the shockwave driven by the SN ejecta into the circumstellar matter (CSM) is moving at 3×104kms1\sim 3\times 10^{4}\,{\rm km\,s}^{-1}. Assuming a constant mass-loss from the stellar progenitor, we find that the mass-loss rate is M˙1.4×104Myr1\dot{M} \approx 1.4\times 10^{-4}\,{M}_{\odot}\,{\rm yr}^{-1}, for an assumed wind velocity of 1000kms11000\,{\rm km\,s}^{-1}. The temporal evolution of the radio emission suggests a radial CSM density structure steeper than the standard r2r^{-2}.

Keywords

Cite

@article{arxiv.2006.13952,
  title  = {A non-equipartition shockwave traveling in a dense circumstellar environment around SN2020oi},
  author = {Assaf Horesh and Itai Sfaradi and Mattias Ergon and Cristina Barbarino and Jesper Sollerman and Javier Moldon and Dougal Dobie and Steve Schulze and Miguel Perez-Torres and David R. A. Williams and Christoffer Fremling and Avishay Gal-Yam and Shrinivas R. Kulkarni and Andrew O'Brien and Peter Lundqvist and Tara Murphy and Rob Fender and Justin Belicki and Eric C. Bellm and Michael W. Coughlin and Eran O. Ofek and V. Zach Golkhou and Matthew J. Graham and Dave A. Green and Thomas Kupfer and Russ R. Laher and Frank J. Masci and Adam A. Miller and James D. Neill and Yvette Perrott and Michael Porter and Daniel J. Reiley and Mickael Rigault and Hector Rodriguez and Ben Rusholme and David L. Shupe and David Titterington},
  journal= {arXiv preprint arXiv:2006.13952},
  year   = {2020}
}

Comments

Submitted to ApJ (21 pages, 9 figures)