Stellar Kinematics and Metallicities in the Ultra-Faint Dwarf Galaxy Reticulum II
J. D. Simon, A. Drlica-Wagner, T. S. Li, B. Nord, M. Geha, K. Bechtol,, E. Balbinot, E. Buckley-Geer, H. Lin, J. Marshall, B. Santiago, L. Strigari,, M. Wang, R. H. Wechsler, B. Yanny, T. Abbott, A. H. Bauer, G. M. Bernstein,, E. Bertin, D. Brooks, D. L. Burke, D. Capozzi

TL;DR
This study characterizes the stellar kinematics and metallicity of Reticulum II, an ultra-faint dwarf galaxy, revealing its dark matter dominance, metallicity spread, and implications for dark matter annihilation signals.
Contribution
It provides detailed spectroscopic measurements of Reticulum II, confirming its status as an ultra-faint dwarf galaxy with extreme metallicity and dark matter properties.
Findings
Reticulum II has a velocity dispersion of 3.3 km/s.
The galaxy is strongly dark matter-dominated with a mass-to-light ratio of 470.
Reticulum II is among the most metal-poor galaxies known.
Abstract
We present Magellan/M2FS, VLT/GIRAFFE, and Gemini South/GMOS spectroscopy of the newly discovered Milky Way satellite Reticulum II. Based on the spectra of 25 Ret II member stars selected from Dark Energy Survey imaging, we measure a mean heliocentric velocity of 62.8 +/- 0.5 km/s and a velocity dispersion of 3.3 +/- 0.7 km/s. The mass-to-light ratio of Ret II within its half-light radius is 470 +/- 210 Msun/Lsun, demonstrating that it is a strongly dark matter-dominated system. Despite its spatial proximity to the Magellanic Clouds, the radial velocity of Ret II differs from that of the LMC and SMC by 199 and 83 km/s, respectively, suggesting that it is not gravitationally bound to the Magellanic system. The likely member stars of Ret II span 1.3 dex in metallicity, with a dispersion of 0.28 +/- 0.09 dex, and we identify several extremely metal-poor stars with [Fe/H] < -3. In…
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