English

Early Spectroscopy and Dense Circumstellar Medium Interaction in SN 2023ixf

High Energy Astrophysical Phenomena 2023-12-14 v2 Solar and Stellar Astrophysics

Abstract

We present the optical spectroscopic evolution of SN~2023ixf seen in sub-night cadence spectra from 1.18 to 14 days after explosion. We identify high-ionization emission features, signatures of interaction with material surrounding the progenitor star, that fade over the first 7 days, with rapid evolution between spectra observed within the same night. We compare the emission lines present and their relative strength to those of other supernovae with early interaction, finding a close match to SN~2020pni and SN~2017ahn in the first spectrum and SN~2014G at later epochs. To physically interpret our observations we compare them to CMFGEN models with confined, dense circumstellar material around a red supergiant progenitor from the literature. We find that very few models reproduce the blended \NC{} emission lines observed in the first few spectra and their rapid disappearance thereafter, making this a unique diagnostic. From the best models, we find a mass-loss rate of 10310210^{-3}-10^{-2} \mlunit{}, which far exceeds the mass-loss rate for any steady wind, especially for a red supergiant in the initial mass range of the detected progenitor. These mass-loss rates are, however, similar to rates inferred for other supernovae with early circumstellar interaction. Using the phase when the narrow emission features disappear, we calculate an outer dense radius of circumstellar material RCSM,out5×1014 cmR_\mathrm{CSM, out}\sim5\times10^{14}~\mathrm{cm} and a mean circumstellar material density of ρ=5.6×1014 gcm3\rho=5.6\times10^{-14}~\mathrm{g\,cm^{-3}}. This is consistent with the lower limit on the outer radius of the circumstellar material we calculate from the peak \Halpha{} emission flux, RCSM, out9×1013 cmR_\text{CSM, out}\gtrsim9\times10^{13}~\mathrm{cm}.

Keywords

Cite

@article{arxiv.2306.10119,
  title  = {Early Spectroscopy and Dense Circumstellar Medium Interaction in SN 2023ixf},
  author = {K. Azalee Bostroem and Jeniveve Pearson and Manisha Shrestha and David J. Sand and Stefano Valenti and Saurabh W. Jha and Jennifer E. Andrews and Nathan Smith and Giacomo Terreran and Elizabeth Green and Yize Dong and Michael Lundquist and Joshua Haislip and Emily T. Hoang and Griffin Hosseinzadeh and Daryl Janzen and Jacob E. Jencson and Vladimir Kouprianov and Emmy Paraskeva and Nicolas E. Meza Retamal and Daniel E. Reichart and Iair Arcavi and Alceste Z. Bonanos and Michael W. Coughlin and Ross Dobson and Joseph Farah and Lluís Albany and Claudia Gutiérrez and Suzanne Hawley and Leslie Hebb and Daichi Hiramatsu and D. Andrew Howell and Takashi Iijima and Ilya Ilyin and Kiran Jhass and Curtis McCully and Sean Moran and Brett M. Morris and Alessandra C. Mura and Tomás Müller-Bravo and James Munday and Megan Newsome and Maria Th. Pabst and Paolo Ochner and Estefania Padilla Gonzalez and Andrea Pastorello and Craig Pellegrino and Lara Piscarreta and Aravind P. Ravi and Andrea Reguitti and Laura Salo and Jozsef Vinko and Kellie de Vos and J. C. Wheeler and G. Grant Williams and Samuel Wyatt},
  journal= {arXiv preprint arXiv:2306.10119},
  year   = {2023}
}

Comments

Published in ApJL