English

Using Gamma Ray Monitoring to Avoid Missing the Next Milky Way Type Ia Supernova

High Energy Astrophysical Phenomena 2019-04-17 v1

Abstract

A Milky-Way Type Ia Supernova (SNIa) could be unidentified or even initially unnoticed, being dim in radio, X-rays, and neutrinos, and suffering large optical/IR extinction in the Galactic plane. But SNIa emit nuclear gamma-ray lines from 56Ni56Co56Fe^{56}{\rm Ni}\to ^{56}{\rm Co}\to ^{56}{\rm Fe} radioactive decays. These lines fall within the Fermi/GBM energy range, and the 56Ni^{56}{\rm Ni} 158 keV line is detectable by Swift/BAT. Both instruments frequently monitor the Galactic plane, which is transparent to gamma rays. Thus GBM and BAT are ideal Galactic SNIa early warning systems. We simulate SNIa MeV light curves and spectra to show that GBM and BAT could confirm a Galactic SNIa explosion, followed by Swift localization and observation in X-rays and UVOIR band. The time of detection depends sensitively on the 56Ni^{56}{\rm Ni} distribution, and can be as early as a few days if \gtrsim 10% of the 56Ni^{56}{\rm Ni} is present in the surface as suggested by SN2014J gamma data.

Keywords

Cite

@article{arxiv.1904.04310,
  title  = {Using Gamma Ray Monitoring to Avoid Missing the Next Milky Way Type Ia Supernova},
  author = {Xilu Wang and Brian D. Fields and Amy Yarleen Lien},
  journal= {arXiv preprint arXiv:1904.04310},
  year   = {2019}
}

Comments

9 pages, 7 figures, accepted by MNRAS