The Fastest Travel Together: Chemical Tagging of the Fastest Stars in Gaia DR2 to the Stellar Halo
arXiv:1806.07907 · doi:10.1093/mnras/sty2282
Abstract
The fastest moving stars provide insight into several fundamental properties of the Galaxy, including the escape velocity as a function of Galactocentric radius, the total mass, and the nature and frequency of stellar encounters with the central supermassive black hole. The recent second data release of Gaia has allowed the identification of new samples of stars with extreme velocities. Discrimination among the possible origins of these stars is facilitated by chemical abundance information. We here report the results from our high-resolution spectroscopic followup, using the Apache Point Observatory, of five late-type `hypervelocity' star candidates, characterised by total Galactic rest-frame velocities between 500-600 km/s and estimated to have a probability larger than 50% to be unbound from the Milky Way. Our new results confirm the Gaia DR2 radial velocities to within 1 km/s. We derived stellar atmospheric parameters and chemical abundances for several species including -elements (Mg, Ti, Si, Ca), Fe-peak elements (Fe, Ni, Co, Cr, Mn), neutron-capture elements (Sr, Y, Zr, Ba, La, Nd, Eu) and odd-Z elements (Na, Al, K, V, Cu, Sc). We find that all stars observed are metal-poor giants with -2 [Fe/H] -1 dex and are chemically indistinguishable from typical halo stars. Our results are supported by the chemical properties of four additional stars with extreme space motions which were observed by existing spectroscopic surveys. We conclude that these stars are simply the high-velocity tail of the stellar halo and effectively rule out more exotic origins such as from the Galactic centre or the Large Magellanic Cloud.
14 pages, 5 figures, 4 tables. Accepted for Publication in MNRAS
References in corpus (27)
- Gaia Data Release 2. Summary of the contents and survey properties
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Astrophysics Source Code Library
- The Radial Velocity Experiment (RAVE): first data release
- Galactic chemical evolution: Carbon through Zinc
- Multiple Stellar Populations in Globular Clusters
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- The Radial Velocity Experiment (RAVE): Fifth Data Release
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- Gaia Data Release 2: first stellar parameters from Apsis
- The GALAH Survey: Second Data Release
- CH in stellar atmospheres: an extensive linelist
- Three Hypervelocity White Dwarfs in Gaia DR2: Evidence for Dynamically Driven Double-Degenerate Double-Detonation Type Ia Supernovae
- Hypervelocity Stars: Predicting the Spectrum of Ejection Velocities
- Estimating distances from parallaxes. II. Performance of Bayesian distance estimators on a Gaia-like catalogue
- The origin and evolution of the odd-Z iron-peak elements Sc, V, Mn, and Co in the Milky Way stellar disk
- The escape speed curve of the Galaxy obtained from Gaia DR2 implies a heavy Milky Way
- An Alternative Origin for Hypervelocity Stars
- Hypervelocity Stars: From the Galactic Center to the Halo
- Gaia DR2 in 6D: Searching for the fastest stars in the Galaxy
- Revisiting hypervelocity stars after Gaia DR2
- LAMOST Spectroscopic Survey of the Galactic Anticentre (LSS-GAC): the second release of value-added catalogues
- A hypervelocity star with a Magellanic origin
- The Chemical Composition of the Galactic Bulge and Implications for its Evolution
- Characterizing the High-Velocity Stars of RAVE: The Discovery of a Metal-Rich Halo Star Born in the Galactic Disk
- Galactic evolution of Copper in the light of NLTE computations
- Joint constraints on the Galactic dark matter halo and Galactic Centre from hypervelocity stars
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- The mass of our Milky Way
- The local high velocity tail and the Galactic escape speed
- Gaia DR2 in 6D: Searching for the fastest stars in the Galaxy
- Identical or fraternal twins? : The chemical homogeneity of wide binaries from Gaia DR2
- Kinematics of Highly R-Process-Enhanced Field Stars: Evidence for an Accretion Origin and Detection of Several Groups from Disrupted Satellites
- Abundances and kinematics of carbon-enhanced metal-poor stars in the Galactic halo*; A new classification scheme based on Sr and Ba
- The Bulge Radial Velocity Assay for RR Lyrae stars (BRAVA-RR) DR2: a Bimodal Bulge?
- The R-Process Alliance: Chemo-Dynamically Tagged Groups of Halo -Process-Enhanced Stars Reveal a Shared Chemical-Evolution History
- Old, Metal-Poor Extreme Velocity Stars in the Solar Neighborhood
- Exploring the Galaxy's halo and very metal-weak thick disk with SkyMapper and Gaia DR2
- The Origin of r-process Enhanced Metal-Poor Halo Stars In Now-Destroyed Ultra-Faint Dwarf Galaxies
- Nearby high-speed stars in Gaia DR2
- Gaia DR3 in 6D: The search for fast hypervelocity stars and constraints on the Galactic Centre environment
- Gaia EDR3 in 6D: Searching for unbound stars in the Galaxy
- The COMBS survey I: Chemical Origins of Metal-Poor Stars in the Galactic Bulge
- Cosmological Insights into the Early Accretion of \textit{r}-Process-Enhanced stars. I. A Comprehensive Chemo-dynamical Analysis of LAMOST J1109+0754
- Stars made in outflows may populate the stellar halo of the Milky Way
- The R-Process Alliance: Chemo-Dynamically Tagged Groups II. An Extended Sample of Halo -Process-Enhanced Stars
- Impact of the Galactic Disk and Large Magellanic Cloud on the Trajectories of Hypervelocity Stars Ejected from the Galactic Center
- Decoding the compositions of four bright -process-enhanced stars
- Disentangled Representation Learning for Astronomical Chemical Tagging
- Origin of a massive hyper-runaway subgiant star LAMOST-HVS1 -- implication from Gaia and follow-up spectroscopy
- Flying far and fast: the distribution of distant hypervelocity star candidates from Gaia DR2 data
- Finding -II sibling stars in the Milky Way with the Greedy Optimistic Clustering algorithm
- High Velocity Stars in SDSS/APOGEE DR17
- Chemical abundance analysis of extremely metal-poor stars in the Sextans dwarf spheroidal galaxy
- The Chemical Composition of Extreme-Velocity Stars
- Discovery of an Extremely r-process-enhanced Thin-disk Star with [Eu/H] = +0.78
- A catalogue of asteroseismically calibrated ages for APOGEE DR17. The predictions of a CatBoost machine learning model based on the [Mg/Ce] chemical clock and other stellar parameters
- J01020100-7122208: an accreted evolved blue straggler that wasn't ejected from a supermassive black hole
- Ancient, eclipsing, tidally-locked: A blue lurker progenitor in the population of extreme-velocity star candidates
- On the Chemical Composition of the Evolved Very Bright Metal-Poor Star HD 1936