Dynamical modelling of luminous and dark matter in 17 Coma early-type galaxies
arXiv:0709.0691 · doi:10.1111/j.1365-2966.2007.12434.x
Abstract
Dynamical models for 17 Coma early-type galaxies are presented. The galaxy sample consists of flattened, rotating as well as non-rotating early-types including cD and S0 galaxies with luminosities between M=-18.79 and M=-22.56. Kinematical long-slit observations cover at least the major and minor axis and extend to 1-4 effective radii. Axisymmetric Schwarzschild models are used to derive stellar mass-to-light ratios and dark halo parameters. In every galaxy models with a dark matter halo match the data better than models without. The statistical significance is over 95 percent for 8 galaxies, around 90 percent for 5 galaxies and for four galaxies it is not significant. For the highly significant cases systematic deviations between observed and modelled kinematics are clearly seen; for the remaining galaxies differences are more statistical in nature. Best-fit models contain 10-50 percent dark matter inside the half-light radius. The central dark matter density is at least one order of magnitude lower than the luminous mass density. The central phase-space density of dark matter is often orders of magnitude lower than in the luminous component, especially when the halo core radius is large. The orbital system of the stars along the major-axis is slightly dominated by radial motions. Some galaxies show tangential anisotropy along the minor-axis, which is correlated with the minor-axis Gauss-Hermite coefficient H4. Changing the balance between data-fit and regularisation constraints does not change the reconstructed mass structure significantly. Model anisotropies tend to strengthen if the weight on regularisation is reduced, but the general property of a galaxy to be radially or tangentially anisotropic, respectively, does not change. (abridged)
31 pages, 34 figures; accepted for publication in MNRAS
References in corpus (1)
Cited by in corpus (15)
- Measuring the inclination and mass-to-light ratio of axisymmetric galaxies via anisotropic Jeans models of stellar kinematics
- The Black Hole Mass, Stellar M/L, and Dark Halo in M87
- Kinematic properties of early-type galaxy haloes using planetary nebulae
- Measuring the non-thermal pressure in early type galaxy atmospheres: A comparison of X-ray and optical potential profiles in M87 and NGC1399
- The PN.S Elliptical Galaxy Survey: the dark matter in NGC 4494
- The mass of the black hole in Centaurus A from SINFONI AO-assisted integral-field observations of stellar kinematics
- Dearth of dark matter or massive dark halo? Mass-shape-anisotropy degeneracies revealed by NMAGIC dynamical models of the elliptical galaxy NGC 3379
- Dark matter content and internal dynamics of NGC 4697: NMAGIC particle models from slit data and planetary nebulae velocities
- The SAURON Project - XIV. No escape from V: a global and local parameter in early-type galaxy evolution
- An Iterative Method for Constructing Equilibrium Phase Models of Stellar Systems
- The supermassive black hole of Fornax A
- Hydrostatic Gas Constraints on Supermassive Black Hole Masses: Implications for Hydrostatic Equilibrium and Dynamical Modelling in a Sample of Early-Type Galaxies
- Two-component galaxies with flat rotation curve
- Spatially resolved spectroscopy of Coma cluster early-type galaxies IV. Completing the dataset
- Dynamical modelling of the elliptical galaxy NGC 2974