Rubin Observatory Reveals a Dust-Shrouded Halo Globular Cluster in Ophiuchus
arXiv:2609.15872
Abstract
We present the discovery of the Milky Way satellite Rubin-GC1 (Rubin J1628-1735) using data from the NSF-DOE Vera C. Rubin Observatory's Early Data Preview 2. The system was discovered in the direction of the Galactic bulge with in a region of high stellar density and a foreground reddening of . We simultaneously fit the morphology and isochrone parameters of Rubin-GC1, determining that it is a faint () and compact ( pc) Milky Way satellite at a distance of kpc; its stellar population is intermediate-age ( Gyr) and moderately metal-rich (). Together, these properties suggest Rubin-GC1 is most likely a star cluster in the faint tail of the luminosity function of globular clusters surrounding the Milky Way. We identify a distinct proper motion signature from Rubin-GC1 in Gaia DR3, and from a comparison of the system's 5D phase space information to -body models of the Sagittarius dwarf spheroidal galaxy's tidal stream, we determine that Rubin-GC1 is likely an accreted cluster associated with the Sagittarius leading arm. The discovery of Rubin-GC1 highlights the potential of Rubin to uncover faint, resolved satellites in dust-shrouded regions of the Milky Way, including remnants of the accretion events that have shaped the Galaxy's hierarchical assembly.
11 pages, 5 figures