Energy equipartition in Globular Clusters through the eyes of dynamical models
arXiv:2410.00685 · doi:10.1051/0004-6361/202450783
Abstract
Gravitational encounters drive globular clusters toward energy equipartition, mass segregation and evaporation altering structural, spatial and kinematic features. We determine the dynamical state of a few globular clusters by means of a multi-mass King-like dynamical model, focusing on the energy equipartition degree and its relation with model parameters. We fit the observed velocity dispersion, as derived from HST proper motion data, as a function of the stellar mass , to estimate the parameter , a measure of the gravitational potential well. The same fit is repeated by means of the Bianchini relation, providing the equipartition mass . The relationship between and has been studied and the structural properties, such as concentration , number of core relaxation timescales and core radius , are discussed. To obtain an independent estimate of , we fit observed surface brightness profiles by using the predicted surface density and a mass-luminosity relation from isochrones. The quality of the fits on obtained by means of our dynamical model is comparable to those obtained with the Bianchini function. Nonetheless, when the Bianchini function is used to fit the projected velocity dispersion, the resulting degree of equipartition is underestimated. On the contrary, our approach provides the equipartition degree at any radial or projected distance by means of . As a result, a cluster in a more advanced dynamical state shows a larger , as well as larger and , while decreases. The estimates of obtained by fitting surface brightness profiles result compatible at confidence level with those from internal kinematics, although further investigation of statistical and systematic errors is required.
References in corpus (17)
- What is a globular cluster? An observational perspective
- Dynamical age differences among coeval star clusters as revealed by blue stragglers
- The updated BaSTI stellar evolution models and isochrones: II. alpha-enhanced calculations
- Surface Brightness Profiles of Galactic Globular Clusters from Hubble Space Telescope Images
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XXIII. Proper-motion catalogs and internal kinematics
- Investigating mass segregation process in globular clusters with Blue Straggler Stars: the impact of dark remnants
- The updated BaSTI stellar evolution models and isochrones. III. White Dwarfs
- Evidence for a bottom-light initial mass function in massive star clusters
- Dynamical Evolution of Multiple-Population Globular Clusters
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XVIII. Proper-motion kinematics of multiple stellar populations in the core regions of NGC 6352
- On the tidal tails of Milky Way globular clusters
- The "dynamical clock": dating the internal dynamical evolution of star clusters with Blue Straggler Stars
- On the Link Between Energy Equipartition and Radial Variation in the Stellar Mass Function of Star Clusters
- New insights into star cluster evolution towards energy equipartition
- Multimass modelling of Milky Way globular clusters -- I. Implications on their stellar initial mass function above 1 M
- Mass segregation and dynamics of primordial binaries in star clusters with a radially anisotropic velocity distribution
- A simple two-component description of energy equipartition and mass segregation for anisotropic globular clusters