Modeling complete distributions with incomplete observations: The velocity ellipsoid from Hipparcos data
arXiv:astro-ph/0505057 · doi:10.1086/431572
Abstract
[abridged] A "missing data" algorithm is developed to model (ie, reconstruct) the three-dimensional velocity distribution function of a sample of stars using data (velocity measurements) every one of which has one dimension unmeasured (the radial direction). It also accounts for covariant measurement uncertainties on the tangential velocity components. The algorithm is applied to tangential velocities measured in a kinematically unbiased sample of 11,865 stars taken from the Hipparcos catalog. The local stellar velocity distribution function of each of a set of 20 color-selected subsamples is modeled as a mixture of two three-dimensional Gaussian ellipsoids of arbitrary relative responsibility. In the fitting, one Gaussian (the "halo") is fixed at the known mean velocity and velocity variance tensor of the Galaxy halo, and the other (the "disk") is allowed to take arbitrary mean and arbitrary variance tensor. The mean and variance tensor (commonly the "velocity ellipsoid") of the disk velocity distribution are both found to be strong functions of stellar color, with long-lived populations showing larger velocity dispersion, slower mean rotation velocity, and smaller vertex deviation than short-lived populations. The local standard of rest (LSR) is inferred in the usual way and the Sun's motion relative to the LSR is found to be (U,V,W)_{\odot}=(10.1,4.0,6.7)+/-(0.5,0.8,0.2) km/s. Artificial data sets are made and analyzed, with the same error properties as the Hipparcos data, to demonstrate that the analysis is unbiased. The results are shown to be insensitive to the assumption that the velocity distributions are Gaussian.
ApJ accepted for publication
References in corpus (3)
Cited by in corpus (56)
- A Spectroscopic Study of the Ancient Milky Way: F- and G-Type Stars in the Third Data Release of the Sloan Digital Sky Survey
- The Milky Way's circular velocity curve between 4 and 14 kpc from APOGEE data
- The origin of accreted stellar halo populations in the Milky Way using APOGEE, , and the EAGLE simulations
- Chemodynamics of the Milky Way. I. The first year of APOGEE data
- The Milky Way Tomography with SDSS: III. Stellar Kinematics
- Galactic masers and the Milky Way circular velocity
- Extreme deconvolution: Inferring complete distribution functions from noisy, heterogeneous and incomplete observations
- Hypervelocity Stars: Predicting the Spectrum of Ejection Velocities
- The ELM Survey. II. Twelve Binary White Dwarf Merger Systems
- Hypervelocity Stars. I. The Spectroscopic Survey
- Hypervelocity Stars: From the Galactic Center to the Halo
- A Successful Targeted Search for Hypervelocity Stars
- Discovery of the Eclipsing Detached Double White Dwarf Binary NLTT 11748
- The power spectrum of the Milky Way: Velocity fluctuations in the Galactic disk
- The Discovery of Binary White Dwarfs that will Merge within 500 Myr
- New binaries among UV-selected, hot subdwarf stars and population properties
- Calculation of the Local Standard of Rest from 20,574 Local Stars in the New Hipparcos Reduction with Known Radial Velocities
- First Results from Pan-STARRS1: Faint, High Proper Motion White Dwarfs in the Medium-Deep Fields
- Predicted Space Motions for Hypervelocity and Runaway Stars: Proper Motions and Radial Velocities for the GAIA Era
- The velocity distribution of nearby stars from Hipparcos data II. The nature of the low-velocity moving groups
- The velocity distribution of nearby stars from Hipparcos data I. The significance of the moving groups
- PSR J1024-0719: A Millisecond Pulsar in an Unusual Long-Period Orbit
- A millisecond pulsar in an extremely wide binary system
- The Century Survey Galactic Halo Project III: A Complete 4300 deg^2 Survey of Blue Horizontal Branch Stars in the Metal-Weak Thick Disk and Inner Halo
- Uncertainties in the Galactic dark matter distribution: an update
- The heavily polluted atmosphere of the DAZ white dwarf GALEX J193156.8+011745
- Runaway Stars, Hypervelocity Stars, and Radial Velocity Surveys
- Evidence of enhanced magnetism in cool, polluted white dwarfs
- A new extremely low-mass white dwarf in the NLTT catalogue
- A comprehensive comparison of the Sun to other stars: searching for self-selection effects
- The Local Stellar Halo is Not Dominated by a Single Radial Merger Event
- EmpiriciSN: Re-sampling Observed Supernova/Host Galaxy Populations using an XD Gaussian Mixture Model
- SDSS J163030.58+423305.8: A 40 minute Orbital Period Detached White Dwarf Binary
- A non-parametric method for measuring the local dark matter density
- The Frequency of Field Blue-Straggler Stars in the Thick Disk and Halo System of the Galaxy
- Chemical Cartography. II. The Assembly History of the Galactic Stellar Halo Traced by Carbon-Enhanced Metal-Poor Stars
- The Shortest Period Detached Binary White Dwarf System
- Shape and orientation of stellar velocity ellipsoids in spiral galaxies
- Improving \textsl{Gaia} parallax precision with a data-driven model of stars
- A new Hyper-Runaway star discovered from LAMOST and GAIA: ejected almost in the galactic rotation direction
- The Runaway White Dwarf LP400-22 Has a Companion
- Chemical abundance analysis of 19 barium stars
- Accurate Masses for the Primary and Secondary in the Eclipsing White Dwarf Binary NLTT 11748
- Impact of the Galactic Disk and Large Magellanic Cloud on the Trajectories of Hypervelocity Stars Ejected from the Galactic Center
- Using the Multi-Object Adaptive Optics demonstrator RAVEN to observe metal-poor stars in and towards the Galactic Centre
- High precision pulsar timing and spin frequency second derivatives
- Extreme abundance ratios in the polluted atmosphere of the cool white dwarf NLTT19868
- A Map of the Local Velocity Substructure in the Milky Way Disk
- Dependence of Galactic Halo Kinematics on the Adopted Galactic Potential
- Insights into the Formation and Evolution History of the Galactic Disk System
- Removing the Microlensing Blending-Parallax Degeneracy Using Source Variability
- A Gaia DR2 search for dwarf galaxies towards Fermi-LAT sources: implications for annihilating dark matter
- Measuring the undetectable: Proper motions and parallaxes of very faint sources
- Photometric constraints on white dwarfs and the identification of extreme objects
- Maximum likelihood estimation of local stellar kinematics
- The Solar System's passage through the Radcliffe wave during the middle Miocene