On the Nature of Ultra-faint Dwarf Galaxy Candidates. III. Horologium I, Pictor I, Grus I, and Phoenix II
arXiv:1809.02259
Abstract
We use deep Gemini/GMOS-S photometry to study the stellar populations of the recently discovered Milky Way satellite candidates Horologium I, Pictor I, Grus I, and Phoenix II. Horologium I is most likely an ultra-faint dwarf galaxy at kpc, with pc and [Fe/H]\,dex. It's color-magnitude diagram shows evidence of a split sub-giant branch similar to that seen in some globular clusters. Additionally, Gaia DR2 data suggests it is, or was, a member of the Magellanic Cloud group. Pictor I with its compact size (pc) and metal-poor stellar population ([Fe/H]) closely resembles confirmed star clusters. Grus I lacks a well-defined centre, but has two stellar concentrations within the reported half-light radius ( arcmin) and has a mean metallicity of [Fe/H]. Phoenix II has a half-light radius of pc and an [Fe/H] and exhibits S-shaped tidal arms extending from its compact core. Great circles through each of these substructures intersect at the Large Magellanic Cloud (LMC). This suggests that these objects are, or once were, satellites of the LMC.
20 Pages, 27 Figures plus Appendix. Comments welcome, submitted to MNRAS
Cited by in corpus (7)
- Quantifying the impact of the Large Magellanic Cloud on the structure of the Milky Way's dark matter halo using Basis Function Expansions
- Chemical Abundances in the Ultra-Faint Dwarf Galaxies Grus I and Triangulum II: Neutron-Capture Elements as a Defining Feature of the Faintest Dwarfs
- An extended halo around an ancient dwarf galaxy
- An Updated SMC and Magellanic Bridge Catalog of Star Clusters, Associations and Related Objects
- Search for RR Lyrae stars in DES ultra-faint systems: Grus I, Kim 2, Phoenix II, and Grus II
- Stellar mass segregation as separating classifier between globular clusters and ultra-faint dwarf galaxies
- A Deeper Look at DES Dwarf Galaxy Candidates: Grus I and Indus II