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Gaia DR2 in 6D: Searching for the fastest stars in the Galaxy

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arxiv 1804.10607 v2 pith:RYLXACOO submitted 2018-04-27 astro-ph.GA astro-ph.SR

classification astro-ph.GAastro-ph.SR
keywords starsunboundfastestgalaxyradialvelocitycandidatescoming
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abstract

We search for the fastest stars in the subset of stars with radial velocity measurements of the second data release (DR2) of the European Space Agency mission Gaia. Starting from the observed positions, parallaxes, proper motions, and radial velocities, we construct the distance and total velocity distribution of more than $7$ million stars in our Milky Way, deriving the full 6D phase space information in Galactocentric coordinates. These information are shared in a catalogue, publicly available at http://home.strw.leidenuniv.nl/~marchetti/research.html. To search for unbound stars, we then focus on stars with a probability greater than $50 \%$ of being unbound from the Milky Way. This cut results in a clean sample of $125$ sources with reliable astrometric parameters and radial velocities. Of these, $20$ stars have probabilities greater than 80 $\%$ of being unbound from the Galaxy. On this latter sub-sample, we perform orbit integration to characterize the stars' orbital parameter distributions. As expected given the relatively small sample size of bright stars, we find no hypervelocity star candidates, stars that are moving on orbits consistent with coming from the Galactic Centre. Instead, we find $7$ hyper-runaway star candidates, coming from the Galactic disk. Surprisingly, the remaining $13$ unbound stars cannot be traced back to the Galaxy, including two of the fastest stars (around $700$ km/s). If conformed, these may constitute the tip of the iceberg of a large extragalactic population or the extreme velocity tail of stellar streams.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Hot Jupiters are Destroyed by Tides While Their Host Stars are on the Main Sequence

    astro-ph.EP 2019-08 accept novelty 7.0 of 10

    Hot Jupiter hosts are kinematically colder than matched field stars, implying they are younger and that hot Jupiters are destroyed by tidal decay during the main sequence.

  2. Milky Way dynamics in light of Gaia

    astro-ph.GA 2025-01 accept novelty 3.0 of 10

    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 rem...

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