Dynamical constraints on the dark matter distribution of the Sculptor dwarf spheroidal from stellar proper motions
arXiv:1801.07343 · doi:10.3847/1538-4357/aac2d3
Abstract
We compare the transverse velocity dispersions recently measured within the Sculptor dwarf spheroidal galaxy to the predictions of previously published dynamical models. These provide good fits to the observed number count and velocity dispersion profiles of metal-rich and metal-poor stars both in cored and in cusped potentials. At the projected radius where the proper motions were measured, these models predict transverse dispersions in the range 6 to 9.5 km/s, with the tangential dispersion about 1 km/s larger than the (projected) radial dispersion. Both dispersions are predicted to be about 1 km/s larger for metal-poor than for metal-rich stars. At this projected radius, cored and cusped potentials predict almost identical transverse dispersions. The measured tangential dispersion ( km/s) agrees remarkably well with these predictions, while the measured radial dispersion ( km/s) differs only at about the level. Thus, the proper motion data are in excellent agreement with previous data but do not help to distinguish between cored and cusped potentials. This will require velocity dispersion data (either from proper motions or from radial velocities) with uncertainties well below 1 km/s over a range of projected radii.
5 pages, 2 figures
References in corpus (5)
- PolyChord: nested sampling for cosmology
- The Observed properties of Dark Matter on small spatial scales
- The kinematic status and mass content of the Sculptor dwarf spheroidal galaxy
- Stellar Velocities in the Carina, Fornax, Sculptor and Sextans dSph Galaxies: Data from the Magellan/MMFS Survey
- Determining the Nature of Dark Matter with Astrometry
Cited by in corpus (26)
- The distribution of dark matter in galaxies
- Dark matter heats up in dwarf galaxies
- Diversity of dark matter density profiles in the Galactic dwarf spheroidal satellites
- Ultra-light Dark Matter is Incompatible with the Milky Way's Dwarf Satellites
- To beta or not to beta: can higher-order Jeans analysis break the mass-anisotropy degeneracy in simulated dwarfs?
- The Tucana dwarf spheroidal galaxy: not such a massive failure after all
- The MUSE-Faint survey. II. The dark matter-density profile of the ultra-faint dwarf galaxy Eridanus 2
- Stellar chemo-kinematics of the Cetus dwarf spheroidal galaxy
- GaiaHub: A method for combining data from the Gaia and Hubble space telescopes to derive improved proper motions for faint stars
- Towards an improved model of self-interacting dark matter haloes
- The effect of tides on the Sculptor dwarf spheroidal galaxy
- Scale-Invariant Dynamics of Galaxies, MOND, Dark Matter, and the Dwarf Spheroidals
- Dark and luminous mass components of Omega Centauri with stellar kinematics
- Angular distribution of gamma-ray emission from velocity-dependent dark matter annihilation in subhalos
- HSTPROMO Internal Proper Motion Kinematics of Dwarf Spheroidal Galaxies: I. Velocity Anisotropy and Dark Matter Cusp Slope of Draco
- Stellar proper motions in the outskirts of classical dwarf spheroidal galaxies with Gaia EDR3
- Uncovering dark matter density profiles in dwarf galaxies with graph neural networks
- The spatial distribution of globular clusters in dwarf spheroidal galaxies and the timing problem
- Can tides explain the low dark matter density in Fornax?
- Trial by FIRE: Probing the dark matter density profile of dwarf galaxies with GraphNPE
- Distribution of Phantom Dark Matter in Dwarf Spheroidals
- Timing Mass of the Local Group
- Dark matter distribution and dynamics of dwarf spheroidal galaxies
- Kinematics of the Sagittarius Dwarf Spheroidal core: A 5D Analysis for a 6D Methodology with Gaia DR3
- Stellar Cores Live Long and Prosper in Cuspy Dark Matter Halos
- Broken Expectations: The Effects of Modelling Assumptions on the Inferred Dark Matter Distribution in the Milky Way's Satellites