The outermost edges of the Milky Way halo from galaxy kinematics
arXiv:2105.04978 · doi:10.3847/2041-8213/ac0a7f
Abstract
We measure for the first time the outermost edges of the Milky Way (MW) halo in terms of the depletion and turnaround radii. The inner depletion radius, , identified at the location of maximum infall velocity, separates a growing halo from the draining environment, while the turnaround radius, , marks the outermost edge of infalling material towards the halo, both of which are located well outside the virial radius. Using the motions of nearby dwarf galaxies within , we obtain a marginal detection of the infall zone around the MW with a maximum velocity of . This enables us to measure and . The measured depletion radius is about 1.5 times the MW virial radius () measured from internal dynamics. Compared with halos in the cosmological simulation Illustris TNG100, the factor 1.5 is consistent with that of halos with similar masses and dynamical environments to the MW but slightly smaller than typical values of Local Group analogs, potentially indicating the unique evolution history of the MW. These measurements of halo edges directly quantify the ongoing evolution of the MW outer halo and provide constraints on the current dynamical state of the MW that are independent from internal dynamics.
9 pages, 4 figures; accepted to ApJL
References in corpus (18)
- The NumPy array: a structure for efficient numerical computation
- 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
- Updated Nearby Galaxy Catalog
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- Splashback in accreting dark matter halos
- The virialized mass of dark matter haloes
- Action Dynamics of the Local Supercluster
- Revised and new proper motions for confirmed and candidate Milky Way dwarf galaxies
- The mass of the Milky Way out to 100 kpc using halo stars
- The Edge of the Galaxy
- A natural boundary of dark matter haloes revealed around the minimum bias and maximum infall locations
- A Redefinition of the Halo Boundary Leads to a Simple yet Accurate Halo Model of Large Scale Structure
- The Phase Space Structure of Dark Matter Halos
- Dwarf Galaxies in the Local Volume
- The Milky Way's circular velocity curve and its constraint on the Galactic mass with RR Lyrae stars
- Clusters Have Edges: The Projected Phase SpaceStructure of SDSS redMaPPer Clusters
- The orbital phase space of contracted dark matter halos
- Measuring the mass and concentration of dark matter halos from the velocity dispersion profile of their stars
Cited by in corpus (7)
- First measurement of the characteristic depletion radius of dark matter haloes from weak lensing
- Physical evolution of dark matter halo around the depletion boundary
- A physical and concise halo model based on the depletion radius
- Consequences of using a smooth cosmic distance in a lumpy universe: I
- The history and mass content of cluster galaxies in the EAGLE simulation
- Einasto profile as the halo model solution coupled to the depletion radius
- The stability of galaxies in an expanding universe obtained by Newtonian dynamics