The Luminous and Double-Peaked Type Ic Supernova 2019stc: Evidence for Multiple Energy Sources
Abstract
We present optical photometry and spectroscopy of SN\,2019stc (=ZTF19acbonaa), an unusual Type Ic supernova (SN Ic) at a redshift of . SN\,2019stc exhibits a broad double-peaked light curve, with the first peak having an absolute magnitude of mag, and the second peak, about 80 rest-frame days later, mag. The total radiated energy is large, erg. Despite its large luminosity, approaching those of Type I superluminous supernovae (SLSNe), SN\,2019stc exhibits a typical SN Ic spectrum, bridging the gap between SLSNe and SNe Ic. The spectra indicate the presence of Fe-peak elements, but modeling of the first light curve peak with radioactive heating alone leads to an unusually high nickel mass fraction of ( M). Instead, if we model the first peak with a combined magnetar spin-down and radioactive heating model we find a better match with M, a magnetar spin period of ms and magnetic field of G, and (consistent with SNe Ic). The prominent second peak cannot be naturally accommodated with radioactive heating or magnetar spin-down, but instead can be explained as circumstellar interaction with of hydrogen-free material located AU from the progenitor. Including the remnant mass leads to a CO core mass prior to explosion of M. The host galaxy has a metallicity of Z, low for SNe Ic but consistent with SLSNe. Overall, we find that SN\,2019stc is a transition object between normal SNe Ic and SLSNe.
Keywords
Cite
@article{arxiv.2103.02611,
title = {The Luminous and Double-Peaked Type Ic Supernova 2019stc: Evidence for Multiple Energy Sources},
author = {Sebastian Gomez and Edo Berger and Griffin Hosseinzadeh and Peter K. Blanchard and Matt Nicholl and V. Ashley Villar},
journal= {arXiv preprint arXiv:2103.02611},
year = {2021}
}
Comments
14 pages, 13 figures, Accepted to ApJ