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591 High-velocity Stars in the Galactic Halo Selected from LAMOST DR7 and Gaia DR2

  • Li Y. -B.
  • , Luo A. -L.
  • , Lu Y. -J.
  • , Zhang X. -S.
  • , J. Li
  • , R. Wang
  • , F. Zuo
  • , M. Xiang
  • , Ting Y. -S.
  • , Tommaso Marchetti
  • , S. Li
  • , Wang Y. -F.
  • , S. Zhang
  • , K. Hattori
  • , Zhao Y. -H.
  • , Zhang H. -W.
  • , G. Zhao
  • CAS - National Astronomical Observatories
  • University of Chinese Academy of Sciences
  • Max Planck Institute for Astronomy
  • Peking University
  • Research Organization of Information and Systems, The Institute of Statistical Mathematics
  • National Institutes of Natural Sciences - National Astronomical Observatory of Japan

Research output: Contribution to journalArticle

Abstract

In this paper, we report 591 high-velocity star candidates (HiVelSCs) selected from over 10 million spectra of Data Release 7 (DR7) of the Large Sky Area Multi-object Fiber Spectroscopic Telescope and the second Gaia data release, with three-dimensional velocities in the Galactic rest frame larger than 445 km s-1. We show that at least 43 HiVelSCs are unbound to the Galaxy with escape probabilities larger than 50%, and this number decreases to eight if the possible parallax zero-point error is corrected. Most of these HiVelSCs are metal-poor and slightly α-enhanced inner halo stars. Only 14% of them have [Fe/H] > -1, which may be the metal-rich "in situ"stars in the halo formed in the initial collapse of the Milky Way or metal-rich stars formed in the disk or bulge but kinematically heated. The low ratio of 14% implies that the bulk of the stellar halo was formed from the accretion and tidal disruption of satellite galaxies. In addition, HiVelSCs on retrograde orbits have slightly lower metallicities on average compared with those on prograde orbits; meanwhile, metal-poor HiVelSCs with [Fe/H] < -1 have an even faster mean retrograde velocity compared with metal-rich HiVelSCs. To investigate the origins of HiVelSCs, we perform orbit integrations and divide them into four types, i.e., hypervelocity stars, hyper-runaway stars, runaway stars and fast halo stars. A catalog for these 591 HiVelSCs, including radial velocities, atmospheric parameters, Gaia astrometric parameters, spatial positions, and velocities, etc., is available in the China-VO PaperData Repository at doi:10.12149/101038.
Original languageEnglish
Pages (from-to)N/A-N/A
Number of pages19
JournalAstrophysical Journal, Supplement Series
Volume252
Issue number1
DOIs
Publication statusPublished - 2021

All Science Journal Classification (ASJC) codes

  • Astronomy and Astrophysics
  • Space and Planetary Science

Keywords

  • High-velocity stars

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