The stellar velocity distribution function in the Milky Way galaxy
arXiv:2005.14534 · doi:10.3847/1538-3881/ab9813
Abstract
The stellar velocity distribution function (DF) in the solar vicinity is re-examined using data from the SDSS APOGEE survey's DR16 and \emph{Gaia} DR2. By exploiting APOGEE's ability to chemically discriminate with great reliability the thin disk, thick disk and (accreted) halo populations, we can, for the first time, derive the three-dimensional velocity DFs for these chemically-separated populations. We employ this smaller, but more data-rich APOGEE+{\it Gaia} sample to build a \emph{data-driven model} of the local stellar population velocity DFs, and use these as basis vectors for assessing the relative density proportions of these populations over 5 12 kpc, and 2.5 kpc range as derived from the larger, more complete (i.e., all-sky, magnitude-limited) {\it Gaia} database. We find that 81.9 3.1 of the objects in the selected \emph{Gaia} data-set are thin-disk stars, 16.6 3.2 are thick-disk stars, and 1.5 0.1 belong to the Milky Way stellar halo. We also find the local thick-to-thin-disk density normalization to be / = 2.1 0.2, a result consistent with, but determined in a completely different way than, typical starcount/density analyses. Using the same methodology, the local halo-to-disk density normalization is found to be /( + ) = 1.2 0.6, a value that may be inflated due to chemical overlap of halo and metal-weak thick disk stars.
15 pages, 12 figures, accepted for publication in ApJ
References in corpus (22)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- The GALAH Survey: Scientific Motivation
- The Dual Origin of Stellar Halos
- Detection of a 63 Degree Cold Stellar Stream in the Sloan Digital Sky Survey
- The Apache Point Observatory Galactic Evolution Experiment (APOGEE) Spectrographs
- Target Selection for the SDSS-IV APOGEE-2 Survey
- The Radial Velocity Experiment (RAVE): second data release
- The Vertical Structure of the Outer Milky Way HI Disk
- A First Constraint on the Thick Disk Scale Length: Differential Radial Abundances in K Giants at Galactocentric Radii 4, 8, and 12 kpc
- Tracing chemical evolution over the extent of the Milky Way's Disk with APOGEE Red Clump Stars
- Vertical distribution of Galactic disk stars IV - AMR and AVR from clump giants
- Constraining the thick disc formation scenario of the Milky Way
- Disentangling the Galactic Halo with APOGEE: I. Chemical and Kinematical Investigation of Distinct Metal-Poor Populations
- New H-band Stellar Spectral Libraries for the SDSS-III/APOGEE survey
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- Dissecting simulated disc galaxies II: the age-velocity relation
- APOGEE Chemical Abundances of the Sagittarius Dwarf Galaxy
- Cepheid Variables in the Flared Outer Disk of our Galaxy
- Disentangling the Galactic Halo with APOGEE: II. Chemical and Star Formation Histories for the Two Distinct Populations
- Lessons from the curious case of the `fastest' star in Gaia DR2
- The tale of the tail -- disentangling the high transverse velocity stars in Gaia DR2
- The velocity ellipsoid in the Galactic disc using Gaia DR1
Cited by in corpus (5)
- Anomalies in Physical Cosmology
- Formation of the Large Nearby Galaxies
- Clean catalogues of blue horizontal-branch stars using Gaia EDR3
- Minimal conditions for survival of technological civilizations in the face of stellar evolution
- Deep and fast Solar System flybys: The controversial case of WD 0810-353