Space Motions of the Dwarf Spheroidal Galaxies Draco and Sculptor based on HST Proper Motions with ~10-year Time Baseline
Sangmo Tony Sohn, Ekta Patel, Gurtina Besla, Roeland P. van der Marel,, James S. Bullock, Louis E. Strigari, Glenn van de Ven, and Matthew G. Walker

TL;DR
This study provides highly precise proper motion measurements of the dwarf galaxies Draco and Sculptor using HST data, revealing their orbital histories and confinement within the Disk of Satellites, with implications for their accretion history.
Contribution
The paper presents significantly improved proper motion measurements for Draco and Sculptor, enabling detailed orbital analysis and insights into their association with the Milky Way and the Disk of Satellites.
Findings
Draco and Sculptor have orbital periods of 1-2 and 2-5 Gyrs.
Their orbits are confined within the Disk of Satellites.
The galaxies' orbital histories suggest they were not accreted as a tightly bound group.
Abstract
We present new proper motion (PM) measurements of the dwarf spheroidal galaxies (dSphs) Draco and Sculptor using multi-epoch images obtained with the Hubble Space Telescope ACS/WFC. Our PM results have uncertainties far lower than previous measurements, even made with the same instrument. The PM results for Draco and Sculptor are (mu_W,mu_N)_Dra = (-0.0562+/-0.0099,-0.1765+/-0.0100) mas/yr and (mu_W,mu_N)_Scl = (-0.0296+/-0.0209,-0.1358 +/-0.0214) mas/yr. The implied Galactocentric velocity vectors for Draco and Sculptor have radial and tangential components: (V_rad,V_tan)_Dra = (-88.6,161.4) +/- (4.4,5.6) km/s; and (V_rad,V_tan)_Scl = (72.6,200.2) +/- (1.3,10.8) km/s. We study the detailed orbital history of both Draco and Sculptor via numerical orbit integrations. Orbital periods of Draco and Sculptor are found to be 1-2 and 2-5 Gyrs, respectively, accounting for uncertainties in the…
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