Probing the shape of the Milky Way dark matter halo with hypervelocity stars: a new method
arXiv:2111.09657 · doi:10.1051/0004-6361/202142679
Abstract
We propose a new method to determine the shape of the gravitational potential of the dark matter (DM) halo of the Milky Way (MW) with the galactocentric tangential velocities of a sample of hypervelocity stars (HVSs). We compute the trajectories of different samples of HVSs in a MW where the baryon distribution is axisymmetric and the DM potential either is spherical or is spheroidal or triaxial with radial-dependent axis ratios. We determine the shape of the DM potential with the distribution of the latitudinal velocity in axisymmetric Galactic potentials, or with the distribution of and of a function of the azimuthal velocity in non-axisymmetric Galactic potentials. We recover the correct shape of the DM potential by comparing the distribution of and against the corresponding distributions of mock samples of HVSs that traveled in DM halos of different shapes. We use the largest possible sample of HVSs of ejected with the Hills mechanism at a rate yr, currently outgoing, and located at more than 10 kpc from the Galactic center. In our ideal case of galactocentric velocities with null uncertainties and no observational limitations, our method recovers the correct shape of the DM potential with a success rate in axisymmetric Galactic potentials, and in the explored non-axisymmetric cases. The unsuccessful cases yield axis ratios of the DM potential that are off by . The success rate decreases with decreasing sample size: for example, for a spherical DM halo, drops from to when the sample size decreases from to HVSs. A robust determination of the shape of the DM potential thus requires the measure of the galactocentric velocity of a few hundred genuine HVSs.
29 pages, 20 figures, 5 tables. Accepted in Astronomy and Astrophysics
References in corpus (39)
- Array Programming with NumPy
- The Gaia mission
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from Kinematics of ~2400 SDSS Blue Horizontal Branch Stars
- An Update on Monitoring Stellar Orbits in the Galactic Center
- An Improved Distance and Mass Estimate for Sgr A* from a Multistar Orbit Analysis
- The Origin of the Bifurcation in the Sagittarius Stream
- On the Shoulders of Giants: Properties of the Stellar Halo and the Milky Way Mass Distribution
- Globular Cluster Streams as Galactic High-Precision Scales - The Poster Child Palomar 5
- Baryonic Pinching of Galactic Dark Matter Halos
- The shape of the inner Milky Way halo from observations of the Pal 5 and GD-1 stellar streams
- The Shape of the Gravitational Potential in Cold Dark Matter Halos
- Hypervelocity Stars: Predicting the Spectrum of Ejection Velocities
- Hypervelocity Stars. I. The Spectroscopic Survey
- The fine-grained phase-space structure of Cold Dark Matter halos
- An Alternative Origin for Hypervelocity Stars
- A Successful Targeted Search for Hypervelocity Stars
- Hypervelocity Stars III. The Space Density and Ejection History of Main Sequence Stars from the Galactic Center
- Milky Way mass constraints from the Galactic satellite gap
- Production of Hypervelocity Stars through Encounters with Stellar-Mass Black Holes in the Galactic Centre
- Kinematics of hypervelocity stars in the triaxial halo of the Milky Way
- The Rotation Curve, Mass Distribution and Dark Matter Content of the Milky Way from Classical Cepheids
- Predicted Space Motions for Hypervelocity and Runaway Stars: Proper Motions and Radial Velocities for the GAIA Era
- Inferring the gravitational potential of the Milky Way with a few precisely measured stars
- Theia: Faint objects in motion or the new astrometry frontier
- The Milky Way Tomography with SDSS. V. Mapping the Dark Matter Halo
- Discovery of two new hypervelocity stars from the LAMOST spectroscopic surveys
- 591 high velocity stars in the Galactic halo selected from LAMOST DR7 and Gaia DR2
- Gaia EDR3 in 6D: Searching for unbound stars in the Galaxy
- Faint objects in motion: the new frontier of high precision astrometry
- An artificial neural network to discover Hypervelocity stars: Candidates in Gaia DR1/TGAS
- Hypervelocity Stars in the Gaia era. Revisiting the most extreme stars from the MMT survey
- Discovery of A candidate Hypervelocity star originated from the Sagittarius Dwarf Spheroidal galaxy
- The fate of close encounters between binary stars and binary supermassive black holes
- Blue extreme disk-runaway stars with Gaia EDR3
- Candidate Hypervelocity Red Clump Stars in the Galactic Bulge Found Using the VVV and Gaia Surveys
- ESA Voyage 2050 white paper -- Faint objects in motion: the new frontier of high precision astrometry
- Probing modified Newtonian dynamics with hypervelocity stars
- Is the dark matter halo of the Milky Way flattened?