English

Model Light Curves for Type Ib and Ic Supernovae

High Energy Astrophysical Phenomena 2021-06-23 v2

Abstract

Using the Monte Carlo code, SEDONA, multiband photometry and spectra are calculated for supernovae derived from stripped helium stars with presupernova masses from 2.2 to 10.0 MM_\odot. The models are representative of evolution in close binaries and have previously been exploded using a parametrized one-dimensional model for neutrino-transport. A subset, those with presupernova masses in the range 2.2 - 5.6 MM_\odot, have many properties in common with observed Type Ib and Ic supernovae, including a median ejected mass near 2 MM_\odot, explosion energies near 1×10511 \times 10^{51} erg, typical 56^{56}Ni masses 0.07 - 0.09 MM_\odot, peak times of about 20 days, and a narrow range for the VV-RR color index 10 days post VV-maximum near 0.3 mag. The median peak bolometric luminosity, near 1042.3^{42.3} erg s1^{-1}, is fainter, however, than for several observational tabulations and the brightest explosion has a bolometric luminosity of only 1042.50^{42.50} erg s1^{-1}. The brightest absolute BB, VV, and RR magnitudes at peak are 17.2-17.2, 17.8-17.8, and 18.0-18.0. These limits are fainter than some allegedly typical Type Ib and Ic supernovae and could reflect problems in our models or the observational analysis. Helium stars with lower and higher masses also produce interesting transients that may have been observed including fast, faint, blue transients and long, red, faint Type Ic supernovae. New models are specifically presented for SN 2007Y, SN 2007gr, SN 2009jf, LSQ13abf, SN 2008D, and SN 2010X.

Keywords

Cite

@article{arxiv.2009.06868,
  title  = {Model Light Curves for Type Ib and Ic Supernovae},
  author = {Stan Woosley and Tuguldur Sukhbold and Daniel Kasen},
  journal= {arXiv preprint arXiv:2009.06868},
  year   = {2021}
}

Comments

submitted to ApJ

R2 v1 2026-06-23T18:32:49.809Z