A Deep Look at the Ultra-Faint Milky Way Satellite Virgo III with Rubin Observatory Data Preview 2
Aashay Pai, Alex Drlica-Wagner, Peter S. Ferguson, William Cerny, Chin Yi Tan, Jeffrey L. Carlin, Yumi Choi, Željko Ivezić, Lauren A. MacArthur, Colin T. Slater, Dan S. Taranu, Brian Yanny
astro-ph.GA
Submitted: 2026-08-14
Updated: 2026-08-18
Comments: 21 pages, 14 figures
Code: https://github.com/DarkEnergySurvey/ugali
License: http://creativecommons.org/licenses/by/4.0/
The gist: We analyze the ultra-faint Milky Way satellite Virgo III using data from the Vera C.
Terminology
Abstract
We analyze the ultra-faint Milky Way satellite Virgo III using data from the Vera C. Rubin Observatory Data Preview 2 (DP2). Virgo III was observed in the Rubin "Cosmic Treasure Chest" (M49) First Look field, which contains 924 visits in the u,g,r,i bands comprising 10.5hrs of exposure time with LSSTCam. These data are considerably deeper than the majority of DP2, with a 5 sigma limiting magnitude that approaches the expected 10-year depth of LSST (25.2-26.5mag, depending on band). We report the morphological and stellar population parameters of Virgo III measured with the maximum-likelihood-based package ugali. The depth of the Rubin imaging yields more than a factor of four increase in the number of candidate member stars (N* = 114+11-11) relative to the Virgo III discovery results (N* = 25+5-4), enabling significantly more precise morphological constraints. Our best-fit parameters broadly agree with previous measurements, further confirming that Virgo III has properties that are consistent with an ultra-faint dwarf galaxy (M V = -2.72+0.49-0.70; r 1/2 = 53+10-8) located at a heliocentric distance of D = 151+8-8. We also demonstrate that the depth and photometric quality of the DP2 data are sufficient to separate metal-poor and metal-rich stars in color-color space. We further present period estimates for the three known RR Lyrae member stars derived from the DP2 forced photometry; we use theoretical Period-Luminosity-Metallicity (PLZ) and Period-Wesenheit-Metallicity (PWZ) relations to obtain independent distance estimates. We find that our period and distance estimates are broadly consistent with previous measurements for these RR Lyrae. These results demonstrate the power of LSST data for the discovery and characterization of ultra-faint dwarf galaxies and motivate future searches for new satellites across the southern sky.
Sources
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- A Chemodynamical Census of the Milky Way's Ultra-Faint Compact Satellites. I. A First Population-Level Look at the Internal Kinematics and Metallicities of 19 Extremely-Low-Mass Halo Stellar Systems
- The Pan-STARRS1 Surveys
- Rubin Science Platform on Google: the story so far
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