A dynamical study of Galactic globular clusters under different relaxation conditions
arXiv:1201.1466 · doi:10.1051/0004-6361/201117977
Abstract
We perform a systematic combined photometric and kinematic analysis of a sample of globular clusters under different relaxation conditions, based on their core relaxation time (as listed in available catalogs), by means of two well-known families of spherical stellar dynamical models. Systems characterized by shorter relaxation time scales are expected to be better described by isotropic King models, while less relaxed systems might be interpreted by means of non-truncated, radially-biased anisotropic f^(ν) models, originally designed to represent stellar systems produced by a violent relaxation formation process and applied here for the first time to the study of globular clusters. The comparison between dynamical models and observations is performed by fitting simultaneously surface brightness and velocity dispersion profiles. For each globular cluster, the best-fit model in each family is identified, along with a full error analysis on the relevant parameters. Detailed structural properties and mass-to-light ratios are also explicitly derived. We find that King models usually offer a good representation of the observed photometric profiles, but often lead to less satisfactory fits to the kinematic profiles, independently of the relaxation condition of the systems. For some less relaxed clusters, f^(ν) models provide a good description of both observed profiles. Some derived structural characteristics, such as the total mass or the half-mass radius, turn out to be significantly model-dependent. The analysis confirms that, to answer some important dynamical questions that bear on the formation and evolution of globular clusters, it would be highly desirable to acquire larger numbers of accurate kinematic data-points, well distributed over the cluster field.
18 pages, 7 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (9)
- Gemini and Hubble Space Telescope Evidence for an Intermediate Mass Black Hole in omega Centauri
- Lifetimes of tidally limited star clusters with different radii
- Surface Brightness Profiles of Galactic Globular Clusters from Hubble Space Telescope Images
- Kinematic signature of an intermediate-mass black hole in the globular cluster NGC 6388
- The globular cluster NGC 2419: a crucible for theories of gravity
- AAOmega spectroscopy of 29 351 stars in fields centered on ten Galactic globular clusters
- Mass Outflow and Chromospheric Activity of Red Giant Stars in Globular Clusters II. M13 and M92
- The Global Kinematics of the Globular Cluster M92
- Testing Photometric Diagnostics for the Dynamical State and Possible IMBH presence in Globular Clusters
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- Hubble Space Telescope Proper Motion (HSTPROMO) Catalogs of Galactic Globular Clusters. V. The rapid rotation of 47 Tuc traced and modeled in three dimensions
- MIKiS: the Multi-Instrument Kinematic Survey of Galactic Globular Clusters. I. Velocity dispersion profiles and rotation signals of 11 globular clusters
- The Gaia-ESO Survey: Kinematics of seven Galactic globular clusters
- Self-consistent models of quasi-relaxed rotating stellar systems
- Radial anisotropy in omega Cen limiting the room for an intermediate-mass black hole
- A comparison between the stellar and dynamical masses of six globular clusters
- Spectroscopic Signatures of Extra-Tidal Stars Around the Globular Clusters NGC 6656 (M22), NGC 3201 and NGC 1851 from RAVE
- Testing lowered isothermal models with direct N-body simulations of globular clusters
- A study of rotating globular clusters - the case of the old, metal-poor globular cluster NGC 4372
- The central dynamics of M3, M13, and M92: Stringent limits on the masses of intermediate-mass black holes
- Exploring the outskirts of globular clusters: the peculiar kinematics of NGC 3201
- A re-evaluation of the central velocity-dispersion profile in NGC 6388
- The Kinematic Richness of Star Clusters I. Isolated Spherical Models with Primordial Anisotropy
- A Helium-Carbon Correlation on the Extreme Horizontal Branch in Centauri
- The dynamical phase transitions of stellar systems and the corresponding kinetimacs
- The relation between the mass-to-light ratio and the relaxation state of globular clusters
- Velocity filtration and temperature inversion in a system with long-range interactions
- Caloric curve of star clusters
- A class of spherical, truncated, anisotropic models for application to globular clusters
- On the density profile of the globular cluster M92
- A simple two-component description of energy equipartition and mass segregation for anisotropic globular clusters
- Three candidate double clusters in the LMC: truth or dare?
- Collisionless dynamics in Globular Clusters
- On the uniqueness of kinematical signatures of intermediate-mass black holes in globular clusters
- The kinematics of star clusters undergoing gas expulsion in Newtonian and Milgromian dynamics
- Energy equipartition in Globular Clusters through the eyes of dynamical models
- Signatures and bias assessment of rotation in galaxy cluster members