English

SN 2019zrk, a bright SN 2009ip analog with a precursor

High Energy Astrophysical Phenomena 2022-10-12 v1

Abstract

We present photometric and spectroscopic observations of the Type IIn supernova SN 2019zrk (also known as ZTF20aacbyec). The SN shows a \gtrsim 100 day precursor, with a slow rise, followed by a rapid rise to M 19.2\sim -19.2 in the rr and gg bands. The post-peak light-curve decline is well fit with an exponential decay with a timescale of 39\sim 39 days, but it shows prominent undulations, with an amplitude of 1\sim 1 mag. Both the light curve and spectra are dominated by an interaction with a dense circumstellar medium (CSM), probably from previous mass ejections. The spectra evolve from a scattering-dominated Type IIn spectrum to a spectrum with strong P-Cygni absorptions. The expansion velocity is high, 16,000\sim 16,000 km s1^{-1}, even in the last spectra. The last spectrum 110\sim 110 days after the main eruption reveals no evidence for advanced nucleosynthesis. From analysis of the spectra and light curves, we estimate the mass-loss rate to be 4×102\sim 4 \times 10^{-2} M_\odot yr1^{-1} for a CSM velocity of 100 km s1^{-1}, and a CSM mass of 1\gtrsim 1 M_\odot. We find strong similarities for both the precursor, general light curve, and spectral evolution with SN 2009ip and similar SNe, although SN 2019zrk displays a brighter peak magnitude. Different scenarios for the nature of the 09ip-class of SNe, based on pulsational pair instability eruptions, wave heating, and mergers, are discussed. }

Keywords

Cite

@article{arxiv.2206.06497,
  title  = {SN 2019zrk, a bright SN 2009ip analog with a precursor},
  author = {Claes Fransson and Jesper Sollerman and Nora L. Strotjohann and Sheng Yang and Steve Schulze and Cristina Barbarino and Erik C. Kool and Eran O. Ofek and Arien Crellin-Quick and Kishalay De and Andrew J. Drake and Christoffer Fremling and Avishay Gal-Yam and Anna Y. Q. Ho and Mansi M. Kasliwal},
  journal= {arXiv preprint arXiv:2206.06497},
  year   = {2022}
}

Comments

18 pages, 12 figures. Astronomy & Astrophysics, in press