Abstract
Laevens et al. recently discovered Triangulum-QII (Tri-QII), a satellite of the Milky Way. Its Galactocentric distance is 36 kpc, and its luminosity is only 450 L·. Using Keck/DEIMOS, we measured the radial velocities of six member stars within 1 2 of the center of Tri II, and we found a velocity dispersion of δv = 5.1+40-1.4km s-1. We also measured the metallicities of three stars and found a range of 0.8 dex in [Fe/H]. The velocity and metallicity dispersions identify Tri II as a dark matter-dominated galaxy. The galaxy is moving very quickly toward the Galactic center (vGSR=- 262 km s-1). Although it might be in the process of being tidally disrupted as it approaches pericenter, there is no strong evidence for disruption in our data set. The ellipticity is low, and the mean velocity, (vhelio) =-382.1 ±2.9 km s-1, rules out an association with the Triangulum¡VAndromeda substructure or the Pan-Andromeda Archaeological Survey stellar stream. If Tri-QII is in dynamical equilibrium, then it would have a mass-to-light ratio of 3600+3500-2100 M· L· -1 the highest of any non-disrupting galaxy (those for which dynamical mass estimates are reliable). The density within the 3D half-light radius would be 4.8 pc , -3.5+8.1 M· pc-1 even higher than Segue 1. Hence, Tri-QII is an excellent candidate for the indirect detection of dark matter annihilation.
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Kirby, E. N., Cohen, J. G., Simon, J. D., & Guhathakurta, P. (2015). Triangulum II: Possibly a very dense ultra-faint dwarf galaxy. Astrophysical Journal Letters, 814(1). https://doi.org/10.1088/2041-8205/814/1/L7
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