Gaia EDR3 in 6D: Searching for unbound stars in the Galaxy
arXiv:2012.02123 · doi:10.1093/mnras/stab599
Abstract
The early third data release (EDR3) of the European Space Agency satellite Gaia provides coordinates, parallaxes, and proper motions for ~1.47 billion sources in our Milky Way, based on 34 months of observations. The combination of Gaia DR2 radial velocities with the more precise and accurate astrometry provided by Gaia EDR3 makes the best dataset available to search for the fastest nearby stars in our Galaxy. We compute the velocity distribution of ~7 million stars with precise parallaxes, to investigate the high-velocity tail of the velocity distribution of stars in the Milky Way. We release a catalogue with distances, total velocities, and corresponding uncertainties for all the stars considered in our analysis, available at https://sites.google.com/view/tmarchetti/research . By applying quality cuts on the Gaia astrometry and radial velocities, we identify a clean subset of 94 stars with a probability Pub > 50% to be unbound from our Galaxy. 17 of these have Pub > 80% and are our best candidates. We propagate these stars in the Galactic potential to characterize their orbits. We find that 11 stars are consistent with being ejected from the Galactic disk, and are possible hyper-runaway star candidates. The other 6 stars are not consistent with coming from a known star-forming region. We investigate the effect of adopting a parallax zero point correction, which strongly impacts our results: when applying this correction, we identify only 12 stars with Pub > 50%, 3 of these having Pub > 80%. Spectroscopic follow-ups with ground-based telescopes are needed to confirm the candidates identified in this work.
17 pages, 11 figures, 6 tables, accepted for publication in MNRAS
References in corpus (28)
- The Gaia mission
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- galpy: A Python Library for Galactic Dynamics
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- Gaia Data Release 1: Catalogue validation
- Gaia Data Release 3 Properties and validation of the radial velocities
- 4MOST: Project overview and information for the First Call for Proposals
- Rings and Radial Waves in the Disk of the Milky Way
- Interaction of massive black hole binaries with their stellar environment: I. Ejection of hypervelocity stars
- Hypervelocity Stars: Predicting the Spectrum of Ejection Velocities
- Estimating distances from parallaxes. II. Performance of Bayesian distance estimators on a Gaia-like catalogue
- Estimating distances from parallaxes. III. Distances of two million stars in the Gaia DR1 catalogue
- The local high velocity tail and the Galactic escape speed
- Hypervelocity Stars: From the Galactic Center to the Halo
- An Alternative Origin for Hypervelocity Stars
- Maximum speed of hypervelocity stars ejected from binaries
- Completeness of the Gaia-verse II: what are the odds that a star is missing from Gaia DR2?
- Kinematics of hypervelocity stars in the triaxial halo of the Milky Way
- Predicted Space Motions for Hypervelocity and Runaway Stars: Proper Motions and Radial Velocities for the GAIA Era
- Characterizing the High-Velocity Stars of RAVE: The Discovery of a Metal-Rich Halo Star Born in the Galactic Disk
- Lessons from the curious case of the `fastest' star in Gaia DR2
- Proper Motions and Trajectories for 16 Extreme Runaway and Hypervelocity Stars
- A Gaia early DR3 mock stellar catalog: Galactic prior and selection function
- Joint constraints on the Galactic dark matter halo and Galactic Centre from hypervelocity stars
- Core-Collapse Supernovae in Binaries as the Origin of Galactic Hyper-Runaway Stars
- Completeness of the Gaia-verse I: when and where were Gaia's eyes on the sky during DR2?
- An artificial neural network to discover Hypervelocity stars: Candidates in Gaia DR1/TGAS
- Existence of the Metal-Rich Stellar Halo and High-velocity Thick Disk in the Galaxy
Cited by in corpus (23)
- Gaia Early Data Release 3: Updated radial velocities from Gaia DR2
- Gaia DR3 in 6D: The search for fast hypervelocity stars and constraints on the Galactic Centre environment
- Substructure at High Speed II: The Local Escape Velocity and Milky Way Mass with Gaia DR2
- Milky Way archaeology using RR Lyrae and type II Cepheids II. High velocity RR Lyrae stars, and mass of the Milky Way
- Constraints on the Galactic Centre environment from Gaia hypervelocity stars
- Hyper-runaway and hypervelocity white dwarf candidates in \textit{Gaia} Data Release 3: possible remnants from Ia/Iax supernova explosions or dynamical encounters
- The Active Chromospheres of Lithium-Rich Red Giant Stars
- On the origins of extreme velocity stars as revealed by large-scale Galactic surveys
- Constraints on the Galactic Centre environment from \textit{Gaia} hypervelocity stars III: Insights on a possible companion to Sgr A*
- Comparing hypervelocity star populations from the Large Magellanic Cloud and the Milky Way
- 60 candidate high-velocity stars originating from the Sagittarius dwarf spheroidal galaxy in Gaia EDR3
- Constraints on the Galactic Centre environment from Gaia hypervelocity stars II: The evolved population
- High Velocity Stars in SDSS/APOGEE DR17
- Properties and applications of a predicted population of runaway He-sdO/B stars ejected from single degenerate He-donor SNe
- Constraints on the origins of hypervelocity stars: velocity distribution, mergers and star-formation history
- Probing the shape of the Milky Way dark matter halo with hypervelocity stars: a new method
- High-Resolution Chemical Abundances of the Nyx Stream
- On Stellar Migration from Andromeda to the Milky Way
- Discovery of Galactic center ejected star in DESI DR1
- Interstellar Objects in the Solar System: 1. Isotropic Kinematics from the Gaia Early Data Release 3
- Partial tidal disruption of White Dwarfs in off-equatorial orbits around Kerr black holes
- Chemical Abundances of Eight Highly Extincted Milky Way Planetary Nebulae
- Evidence for the Late Arrival of Hot Jupiters in Systems with High Host-star Obliquities