English

Shock Breakout in Type II Plateau Supernovae: Prospects for High Redshift Supernova Surveys

High Energy Astrophysical Phenomena 2015-05-27 v3

Abstract

Shock breakout is the brightest radiative phenomenon in a supernova (SN) but is difficult to be observed owing to the short duration and X-ray/ultraviolet (UV)-peaked spectra. After the first observation from the rising phase reported in 2008, its observability at high redshift is attracting enormous attention. We perform multigroup radiation hydrodynamics calculations of explosions for evolutionary presupernova models with various main-sequence masses MMSM_{\rm MS}, metallicities ZZ, and explosion energies EE. We present multicolor light curves of shock breakout in Type II plateau SNe, being the most frequent core-collapse SNe, and predict apparent multicolor light curves of shock breakout at various redshifts zz. We derive the observable SN rate and reachable redshift as functions of filter xx and limiting magnitude mx,limm_{x,{\rm lim}} by taking into account an initial mass function, cosmic star formation history, intergalactic absorption, and host galaxy extinction. We propose a realistic survey strategy optimized for shock breakout. For example, the gg'-band observable SN rate for mg,lim=27.5m_{g',{\rm lim}}=27.5 mag is 3.3 SNe degree2^{-2} day1^{-1} and a half of them locates at z1.2z\geq1.2. It is clear that the shock breakout is a beneficial clue to probe high-zz core-collapse SNe. We also establish ways to identify shock breakout and constrain SN properties from the observations of shock breakout, brightness, time scale, and color. We emphasize that the multicolor observations in blue optical bands with \sim hour intervals, preferably over 2\geq2 continuous nights, are essential to efficiently detect, identify, and interpret shock breakout.

Keywords

Cite

@article{arxiv.1102.2360,
  title  = {Shock Breakout in Type II Plateau Supernovae: Prospects for High Redshift Supernova Surveys},
  author = {N. Tominaga and T. Morokuma and S. I. Blinnikov and P. Baklanov and E. I. Sorokina and K. Nomoto},
  journal= {arXiv preprint arXiv:1102.2360},
  year   = {2015}
}

Comments

26 pages, 23 figures. Accepted for publication in the Astrophysical Journal Supplement Series