English

IC 630: Piercing the Veil of the Nuclear Gas

Astrophysics of Galaxies 2017-04-05 v1

Abstract

IC 630 is a nearby early-type galaxy with a mass of 6×1010M6 \times 10^{10} M_{\odot} with an intense burst of recent (6 Myr) star formation. It shows strong nebular emission lines, with radio and X-ray emission, which classifies it as an AGN. With VLT-SINFONI and Gemini North-NIFS adaptive optics observations (plus supplementary ANU 2.3m WiFeS optical IFU observations), the excitation diagnostics of the nebular emission species show no sign of standard AGN engine excitation; the stellar velocity dispersion also indicate that a super-massive black hole (if one is present) is small (M=2.25×105 MM_{\bullet} = 2.25 \times 10^{5}~M_{\odot}). The luminosity at all wavelengths is consistent with star formation at a rate of about 12M1-2 M_{\odot}/yr. We measure gas outflows driven by star formation at a rate of 0.18M0.18 M_{\odot}/yr in a face-on truncated cone geometry. We also observe a nuclear cluster or disk and other clusters. Photo-ionization from young, hot stars is the main excitation mechanism for [Fe II] and hydrogen, whereas shocks are responsible for the H2_2 excitation. Our observations are broadly comparable with simulations where a Toomre-unstable, self-gravitating gas disk triggers a burst of star formation, peaking after about 30 Myr and possibly cycling with a period of about 200 Myr.

Keywords

Cite

@article{arxiv.1703.03894,
  title  = {IC 630: Piercing the Veil of the Nuclear Gas},
  author = {Mark Durré and Jeremy Mould and Marc Schartmann and Syed Ashraf Uddin and Garrett Cotter},
  journal= {arXiv preprint arXiv:1703.03894},
  year   = {2017}
}

Comments

32 pages, 19 figures Accepted for publication in ApJ