The Mass Profile of the Galaxy to 80 kpc
arXiv:1005.2619 · doi:10.1088/2041-8205/720/1/L108
Abstract
The Hypervelocity Star survey presents the currently largest sample of radial velocity measurements of halo stars out to 80 kpc. We apply spherical Jeans modeling to these data in order to derive the mass profile of the Galaxy. We restrict the analysis to distances larger than 25 kpc from the Galactic center, where the density profile of halo stars is well approximated by a single power law with logarithmic slope between -3.5 and -4.5. With this restriction, we also avoid the complication of modeling a flattened Galactic disk. In the range 25 < r < 80 kpc, the radial velocity dispersion declines remarkably little; a robust measure of its logarithmic slope is between -0.05 and -0.1. The circular velocity profile also declines remarkably little with radius. The allowed range of V_c(80 kpc) lies between 175 and 231 km/s, with the most likely value 193 km/s. Compared with the value at the solar location, the Galactic circular velocity declines by less than 20% over an order of magnitude in radius. Such a flat profile requires a massive and extended dark matter halo. The mass enclosed within 80 kpc is 6.9(+3.0-1.2) 10^11 Msun. Our sample of radial velocities is large enough that the biggest uncertainty in the mass is not statistical but systematic, dominated by the density slope and anisotropy of the tracer population. Further progress requires modeling observed datasets within realistic simulations of galaxy formation.
matches version accepted to ApJ Letters
References in corpus (3)
Cited by in corpus (39)
- "Skinny Milky Way, Please", says Sagittarius
- Constraining the Galaxy's dark halo with RAVE stars
- Globular Cluster Streams as Galactic High-Precision Scales - The Poster Child Palomar 5
- Kinematics of the stellar halo and the mass distribution of the Milky Way using BHB stars
- The abundance of (not just) dark matter haloes
- The Dark Matter at the End of the Galaxy
- Orbits of Massive Satellite Galaxies: I. A Close Look at the Large Magellanic Cloud and a New Orbital History for M33
- Halo-to-Halo Similarity and Scatter in the Velocity Distribution of Dark Matter
- Dynamics of the Magellanic Clouds in a LCDM Universe
- Observations of M31 and M33 with the Fermi Large Area Telescope: a galactic center excess in Andromeda?
- Dark matters on the scale of galaxies
- A Common Origin for Globular Clusters and Ultra-faint Dwarfs in Simulations of the First Galaxies
- Milky Way mass constraints from the Galactic satellite gap
- Balancing mass and momentum in the Local Group
- Predicted Space Motions for Hypervelocity and Runaway Stars: Proper Motions and Radial Velocities for the GAIA Era
- Quantifying the Stellar Halo's Response to the LMC's Infall with Spherical Harmonics
- Bayesian Mass Estimates of the Milky Way II: The dark and light sides of parameter assumptions
- Bringing the Galaxy's dark halo to life
- Dark-matter decays and Milky Way satellite galaxies
- Joint constraints on the Galactic dark matter halo and Galactic Centre from hypervelocity stars
- Milky Way Mass with K Giants and BHB Stars Using LAMOST, SDSS/SEGUE, and Gaia: 3D Spherical Jeans Equation and Tracer Mass Estimator
- Subhalo statistics of galactic halos: beyond the resolution limit
- Global Properties of M31's Stellar Halo from the SPLASH Survey: III. Measuring the Stellar Velocity Dispersion Profile
- Constraining the mass of the Local Group
- An artificial neural network to discover Hypervelocity stars: Candidates in Gaia DR1/TGAS
- The Milky Way's circular velocity curve and its constraint on the Galactic mass with RR Lyrae stars
- Tidal breakup of triple stars in the Galactic Centre
- Self-consistent nonspherical isothermal halos embedding zero-thickness disks
- Systematic uncertainties from halo asphericity in dark matter searches
- Constraining dark matter halo profiles and galaxy formation models using spiral arm morphology. II. Dark and stellar mass concentrations for 13 nearby face-on galaxies
- Quantifying tidal stream disruption in a simulated Milky Way
- Deep Potential: Recovering the gravitational potential from a snapshot of phase space
- Jeans that fit: weighing the mass of the Milky Way analogues in the universe
- Non-Parametric Spherical Jeans Mass Estimation with B-splines
- A Pristine-UNIONS view on the Galaxy: Kinematics of the distant spur feature of the Sagittarius stream traced by Blue Horizontal Branch stars
- Entropy and Mass Distribution in Disc Galaxies
- Line-of-sight mass estimator and the masses of the Milky Way and Andromeda Galaxy
- Machine Learning the Dark Matter Halo Mass of Milky Way-Like Systems
- Faint, high proper motion star candidates selected from the SDSS and PS1 catalogs