English

Pair-Instability Supernovae in the Local Universe

High Energy Astrophysical Phenomena 2015-06-18 v3

Abstract

The discovery of 150 - 300 M_{\odot} stars in the Local Group and pair-instability supernova candidates at low redshifts has excited interest in this exotic explosion mechanism. Realistic light curves for pair-instability supernovae at near-solar metallicities are key to identifying and properly interpreting these events as more are found. We have modeled pair-instability supernovae of 150 - 500 M_{\odot} Z \sim 0.1 - 0.4 Z_{\odot} stars. These stars lose up to 80% of their mass to strong line-driven winds and explode as bare He cores. We find that their light curves and spectra are quite different from those of Population III pair-instability explosions, which therefore cannot be used as templates for low-redshift events. Although non-zero metallicity pair-instability supernovae are generally dimmer than their Population III counterparts, in some cases they will be bright enough to be detected at the earliest epochs at which they can occur, the formation of the first galaxies at zz \sim 10 - 15. Others can masquerade as dim, short duration supernovae that are only visible in the local universe and that under the right conditions could be hidden in a wide variety of supernova classes. We also report for the first time that some pair-instability explosions can create black holes with masses of \sim 100 M_{\odot}.

Keywords

Cite

@article{arxiv.1312.5360,
  title  = {Pair-Instability Supernovae in the Local Universe},
  author = {Daniel J. Whalen and Wesley Even and Joseph Smidt and Alexander Heger and Raphael Hirschi and Norhasliza Yusof and Massimo Stiavelli and Chris L. Fryer and Ke-Jung Chen and Candace C. Joggerst},
  journal= {arXiv preprint arXiv:1312.5360},
  year   = {2015}
}

Comments

16 pages, 15 figures, submitted to ApJ, revised in response to comments by the referee