Revisiting the Proper Motions of M31 and M33 Using Massive Supergiant Stars with Gaia DR3
arXiv:2508.01127 · doi:10.1051/0004-6361/202555477
Abstract
The proper motions (PMs) of M31 and M33 are key to understanding the Local Group's dynamical evolution. However, measurement discrepancies between Gaia blue and red samples, regarding whether the transverse velocity is remarkable, introduce significant ambiguity. In this work, we remeasure the systemic PMs of M31 and M33 using massive supergiant stars from Gaia Data Release 3. Clean disk tracers are selected via color-color diagrams, with foreground contaminants removed through kinematic and astrometric cuts. We identify the discrepancy in M31's blue and red samples as arising from systematic differences between Gaia's 5-parameter (5p) and 6-parameter (6p) astrometric solutions. The 6p solution, applied to sources lacking accurate color information, relies on a pseudo-color approximation, leading to lower precision and larger uncertainties. Two key limitations of the 6p solution are: 1) degraded astrometric accuracy for very red sources (GBP - GRP > 2.6); 2) significant PM zero-point offsets. In our sample, red sources are dominated by the 6p solution, while blue sources include a substantial fraction of 5p sources; this mismatch drives the observed discrepancy. By excluding extreme red sources and calibrating PM zero-points separately for 5p and 6p sources using background quasars, we reduce the discrepancy, bringing blue and red measurements into agreement within 1 sigma. We ultimately report the most robust Gaia-based PMs using high-quality 5p sources. For M31, we obtain (μ_α*, μ_δ)_M31 = (45.9 +/- 8.1, -20.5 +/- 6.6) μas/yr, consistent with, but more precise than, the HST result. For M33, we find (μ_α*, μ_δ)_M33 = (45.3 +/- 9.7, 26.3 +/- 7.3) μas/yr, agreeing with VLBA measurement within 1.5 sigma. These results support a first infall scenario for M33.
15 pages, 8 figures, 4 tables, Accepted for publication in A&A
References in corpus (18)
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- A Survey of Local Group Galaxies Currently Forming Stars. I. UBVRI Photometry of Stars in M31 and M33
- The M31 Velocity Vector. II. Radial Orbit Towards the Milky Way and Implied Local Group Mass
- A deep kinematic survey of planetary nebulae in the Andromeda Galaxy using the Planetary Nebula Spectrograph
- The M31 Velocity Vector. I. Hubble Space Telescope Proper Motion Measurements
- Orbits of Massive Satellite Galaxies: I. A Close Look at the Large Magellanic Cloud and a New Orbital History for M33
- M31 Transverse Velocity and Local Group Mass from Satellite Kinematics
- The M31 Velocity Vector. III. Future Milky Way-M31-M33 Orbital Evolution, Merging, and Fate of the Sun
- An updated survey of globular clusters in M31. II Newly discovered bright and remote clusters
- Determination of the Local Standard of Rest using the LSS-GAC DR1
- The stellar halo and outer disk of M33
- Dynamical signatures of a LCDM-halo and the distribution of the baryons in M33
- A Catalog of Star Cluster Candidates in M33
- Formation of a giant HI bridge between M31 and M33 from their tidal interaction
- The Red Supergiant Content of M31 and M33
- The Local Group Mass in the light of Gaia
- Estimation of the masses in the Local Group by Gradient Boosted Decision Trees
- Future merger of the Milky Way with the Andromeda galaxy and the fate of their supermassive black holes