Hiding in plain sight: record-breaking compact stellar systems in the Sloan Digital Sky Survey
Abstract
Motivated by the recent, serendipitous discovery of the densest known galaxy, M60-UCD1, we present two initial findings from a follow-up search, using the Sloan Digital Sky Survey, Subaru/Suprime-Cam and Hubble Space Telescope imaging, and SOuthern Astrophysical Research (SOAR)/Goodman spectroscopy. The first object discovered, M59-UCD3, has a similar size to M60-UCD1 (half-light radius of r_h ~ 20 pc) but is 40% more luminous (M_V ~ -14.6), making it the new densest-known galaxy. The second, M85-HCC1, has a size like a typical globular cluster (GC; r_h ~ 1.8 pc) but is much more luminous (M_V ~ -12.5). This hypercompact cluster is by far the densest confirmed free-floating stellar system, and is equivalent to the densest known nuclear star clusters. From spectroscopy, we find that both objects are relatively young (~9 Gyr and ~3 Gyr, respectively), with metal-abundances that resemble those of galaxy centers. Their host galaxies show clear signs of large-scale disturbances, and we conclude that these dense objects are the remnant nuclei of recently accreted galaxies. M59-UCD3 is an ideal target for follow-up with high-resolution imaging and spectroscopy to search for an overweight central supermassive black hole as was discovered in M60-UCD1. These findings also emphasize the potential value of ultra-compact dwarfs and massive GCs as tracers of the assembly histories of galaxies.
Keywords
Cite
@article{arxiv.1506.08828,
title = {Hiding in plain sight: record-breaking compact stellar systems in the Sloan Digital Sky Survey},
author = {Michael A. Sandoval and Richard P. Vo and Aaron J. Romanowsky and Jay Strader and Jieun Choi and Zachary G. Jennings and Charlie Conroy and Jean P. Brodie and Caroline Foster and Alexa Villaume and Mark A. Norris and Joachim Janz and Duncan A. Forbes},
journal= {arXiv preprint arXiv:1506.08828},
year = {2015}
}
Comments
ApJ Letters, published, 7 pages, 4 figures. Very galaxies, such dense, wow. Press release with music video: http://www.noao.edu/news/2015/pr1504.php