English

The Space Density of Intermediate Redshift, Extremely Compact, Massive Starburst Galaxies

Astrophysics of Galaxies 2022-11-09 v1

Abstract

We present a measurement of the intrinsic space density of intermediate redshift (z0.5z\sim0.5), massive (M1011 MM_{*} \sim 10^{11} \ \text{M}_{\odot}), compact (Re100R_{e} \sim 100 pc) starburst (ΣSFR1000 M yr1kpc1\Sigma_{SFR} \sim 1000 \ \text{M}_{\odot} \ \text{yr}^{-1} \text{kpc}^{-1}) galaxies with tidal features indicative of them having undergone recent major mergers. A subset of them host kiloparsec scale, >1000 km s1>1000 \ \text{km}\ \text{s}^{-1} outflows and have little indication of AGN activity, suggesting that extreme star formation can be a primary driver of large-scale feedback. The aim for this paper is to calculate their space density so we can place them in a better cosmological context. We do this by empirically modeling the stellar populations of massive, compact starburst galaxies. We determine the average timescale for which galaxies that have recently undergone an extreme nuclear starburst would be targeted and included in our spectroscopically selected sample. We find that massive, compact starburst galaxies targeted by our criteria would be selectable for 14824+27\sim 148 ^{+27}_{-24} Myr and have an intrinsic space density nCS(1.10.3+0.5)×106  Mpc3n_{\text{CS}} \sim (1.1^{+0.5}_{-0.3}) \times 10^{-6} \ \ \text{Mpc}^{-3}. This space density is broadly consistent with our z0.5z\sim0.5 compact starbursts being the most extremely compact and star forming low redshift analogs of the compact star forming galaxies in the early Universe as well as them being the progenitors to a fraction of intermediate redshift post starburst and compact quiescent galaxies.

Keywords

Cite

@article{arxiv.2209.13632,
  title  = {The Space Density of Intermediate Redshift, Extremely Compact, Massive Starburst Galaxies},
  author = {Kelly E. Whalen and Ryan C. Hickox and Alison L. Coil and Aleksandar M. Diamond-Stanic and James E. Geach and John Moustakas and Gregory H. Rudnick and David S. N. Rupke and Paul H. Sell and Christy A. Tremonti and Julie D. Davis and Serena Perrotta and Grayson C. Petter},
  journal= {arXiv preprint arXiv:2209.13632},
  year   = {2022}
}

Comments

27 pages, 13 figures, accepted for publication in the Astrophysical Journal

R2 v1 2026-06-28T02:13:44.855Z