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Old, Metal-Poor Extreme Velocity Stars in the Solar Neighborhood

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

We report the discovery of 30 stars with extreme space velocities ($>$ 480 km/s) in the Gaia-DR2 archive. These stars are a subset of 1743 stars with high-precision parallax, large tangential velocity ($v_{tan}>$ 300 km/s), and measured line-of-sight velocity in DR2. By tracing the orbits of the stars back in time, we find at least one of them is consistent with having been ejected by the supermassive black hole at the Galactic Center. Another star has an orbit that passed near the Large Magellanic Cloud (LMC) about 200 Myr ago. Unlike previously discovered blue hypervelocity stars, our sample is metal-poor (-1.5 $<$ [Fe/H] $<$ -1.0) and quite old ($>$ 1 Gyr). We discuss possible mechanisms for accelerating old stars to such extreme velocities. The high observed space density of this population, relative to potential acceleration mechanisms, implies that these stars are probably bound to the Milky Way (MW). If they are bound, the discovery of this population would require a local escape speed of around $\sim$ 600 km/s and consequently imply a virial mass of $M_{200} \sim 1.4 \times 10^{12} M_\odot$ for the MW.

fields

astro-ph.GA 1

years

2025 1

verdicts

ACCEPT 1

representative citing papers

Milky Way dynamics in light of Gaia

astro-ph.GA · 2025-01-07 · accept · novelty 3.0

A review of Gaia-era Milky Way dynamics concludes that the disc is strongly out of equilibrium and that most recent evidence favors a long, slowly rotating bar, while the bar pattern speed and dark halo properties remain unsettled.

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  • Milky Way dynamics in light of Gaia astro-ph.GA · 2025-01-07 · accept · none · ref 121 · internal anchor

    A review of Gaia-era Milky Way dynamics concludes that the disc is strongly out of equilibrium and that most recent evidence favors a long, slowly rotating bar, while the bar pattern speed and dark halo properties remain unsettled.