English

Clumpy Star Formation and AGN Activity in Dwarf-Dwarf Galaxy Merger Mrk 709

Astrophysics of Galaxies 2021-05-19 v1

Abstract

Nearby, low-metallicity dwarf starburst galaxies hosting active galactic nuclei (AGNs) offer the best local analogs to study the early evolution of galaxies and their supermassive black holes (BHs). Here we present a detailed multi-wavelength investigation of star formation and BH activity in the low-metallicity dwarf-dwarf galaxy merger Mrk 709. Using Hubble Space Telescope Hα\alpha and continuum imaging combined with Keck spectroscopy, we determine that the two dwarf galaxies are likely in the early stages of a merger (i.e., their first pass) and discover a spectacular 10\sim 10 kpc-long string of young massive star clusters (t10t \lesssim 10 Myr; M105 MM_\star \gtrsim 10^5~M_\odot) between the galaxies triggered by the interaction. We find that the southern galaxy, Mrk 709 S, is undergoing a clumpy mode of star formation resembling that seen in high-redshift galaxies, with multiple young clusters/clumps having stellar masses between 10710^7 and 108 M10^8~M_\odot. Furthermore, we present additional evidence for a low-luminosity AGN in Mrk 709 S (first identified by Reines et al. 2014 (arXiv:1405.0278) using radio and X-ray observations), including the detection of the coronal [Fe X] optical emission line. The work presented here provides a unique glimpse into processes key to hierarchical galaxy formation and BH growth in the early Universe.

Keywords

Cite

@article{arxiv.2103.05655,
  title  = {Clumpy Star Formation and AGN Activity in Dwarf-Dwarf Galaxy Merger Mrk 709},
  author = {Erin Kimbro and Amy E. Reines and Mallory Molina and Adam T. Deller and Daniel Stern},
  journal= {arXiv preprint arXiv:2103.05655},
  year   = {2021}
}

Comments

Accepted for publication in The Astrophysical Journal March 5, 2021. 14 pages, 7 figures