Self-consistent models of quasi-relaxed rotating stellar systems
arXiv:1201.1899 · doi:10.1051/0004-6361/201118300
Abstract
Two new families of self-consistent axisymmetric truncated equilibrium models for the description of quasi-relaxed rotating stellar systems are presented. The first extends the spherical King models to the case of solid-body rotation. The second is characterized by differential rotation, designed to be rigid in the central regions and to vanish in the outer parts, where the energy truncation becomes effective. The models are constructed by solving the nonlinear Poisson equation for the self-consistent mean-field potential. For rigidly rotating configurations, the solutions are obtained by an asymptotic expansion on the rotation strength parameter. The differentially rotating models are constructed by means of an iterative approach based on a Legendre series expansion of the density and the potential. The two classes of models exhibit complementary properties. The rigidly rotating configurations are flattened toward the equatorial plane, with deviations from spherical symmetry that increase with the distance from the center. For models of the second family, the deviations from spherical symmetry are strongest in the central region, whereas the outer parts tend to be quasi-spherical. The relevant parameter spaces are explored and the intrinsic and projected structural properties are described. Special attention is given to the effect of different options for the truncation of the distribution function in phase space. Models in the moderate rotation regime are best suited to applications to globular clusters. For general interest in stellar dynamics, at high values of the rotation strength the differentially rotating models exhibit a toroidal core embedded in a quasi-spherical configuration. Physically simple analytical models of the kind presented here provide insights into dynamical mechanisms and may be a basis for more realistic investigations with the help of N-body simulations.
24 pages, 26 figures. To appear in Astronomy and Astrophysics
References in corpus (12)
- The ATLAS3D project - III. A census of the stellar angular momentum within the effective radius of early-type galaxies: unveiling the distribution of Fast and Slow Rotators
- HST Proper Motions and Stellar Dynamics in the Core of the Globular Cluster 47 Tucanae
- Halo globular clusters observed with AAOmega: dark matter content, metallicity and tidal heating
- Na-O anticorrelation and HB. IX. Kinematics of the program clusters. A link between systemic rotation and HB morphology?
- Search for Extratidal Features Around 17 Globular Clusters in the Sloan Digital Sky Survey
- N-body Models of Rotating Globular Clusters
- Comparative study between N-body and Fokker-Planck simulations for rotating star clusters: I. Equal-mass system
- The construction of non-spherical models of quasi-relaxed stellar systems
- A dynamical study of Galactic globular clusters under different relaxation conditions
- 2D Fokker-Planck models of rotating clusters
- The Star Clusters of the Large Magellanic Cloud: Structural Parameters
- The Flattening of Globular Clusters
Cited by in corpus (46)
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- A parsec-resolution simulation of the Antennae galaxies: Formation of star clusters during the merger
- A family of lowered isothermal models
- Rotating Globular Clusters
- The effect of stellar-mass black holes on the central kinematics of omega Cen: a cautionary tale for IMBH interpretations
- Multiple populations in globular clusters: the distinct kinematic imprints of different formation scenarios
- MIKiS: the Multi-Instrument Kinematic Survey of Galactic Globular Clusters. I. Velocity dispersion profiles and rotation signals of 11 globular clusters
- Hubble Space Telescope Proper Motion (HSTPROMO) Catalogs of Galactic Globular Clusters. V. The rapid rotation of 47 Tuc traced and modeled in three dimensions
- Velocity anisotropy in tidally limited star clusters
- Differences in the rotational properties of multiple stellar populations in M 13: a faster rotation for the "extreme" chemical subpopulation
- The Gaia-ESO Survey: Kinematics of seven Galactic globular clusters
- Star Clusters in Evolving Galaxies
- Cluster kinematics and stellar rotation in NGC 419 with MUSE and adaptive optics
- Kinematical fingerprints of star cluster early dynamical evolution
- Radial anisotropy in omega Cen limiting the room for an intermediate-mass black hole
- Systematic errors in Gaia DR2 astrometry and their impact on measurements of internal kinematics of star clusters
- Kinematical evolution of tidally limited star clusters: rotational properties
- The strong rotation of M5 (NGC 5904) as seen from the MIKiS Survey of Galactic Globular Clusters
- A critical look at the merger scenario to explain multiple populations and rotation in iron-complex globular clusters
- Kinematical evolution of multiple stellar populations in star clusters
- Testing lowered isothermal models with direct N-body simulations of globular clusters
- Observational Evidence for a Dark Side to NGC5128's Globular Cluster System
- Second generation stellar disks in Dense Star Clusters and cluster ellipticities
- The impact of stellar evolution on rotating star clusters: the gravothermal-gravogyro catastrophe and the formation of a bar of black holes
- The complex kinematics of rotating star clusters in a tidal field
- The Gaia-ESO Survey: Dynamical models of flattened, rotating globular clusters
- Stellar collisions in flattened and rotating Pop. III star clusters
- Global instability by runaway collisions in nuclear stellar clusters: Numerical tests of a route for massive black hole formation
- The ESO Multi-Instrument Kinematic Survey (MIKiS) of Galactic Globular Clusters: solid body rotation and anomalous velocity dispersion profile in NGC 5986
- Deep HST Imaging in 47 Tucanae: A Global Dynamical Model
- A 3D view of multiple populations kinematics in Galactic globular clusters
- A class of spherical, truncated, anisotropic models for application to globular clusters
- The ESO-VLT MIKiS survey reloaded: exploring the internal kinematics of NGC 6440
- Hierarchical generative models for star clusters from hydro-dynamical simulations
- Central Dynamics of Multi-mass Rotating Star Clusters
- Signature of systemic rotation in 21 Galactic Globular Clusters from APOGEE-2
- Merged or monolithic? Using machine-learning to reconstruct the dynamical history of simulated star clusters
- Dynamics of the galactic component of Abell S1063 and MACS J1206.20847
- Made-to-Measure Modelling of Globular Clusters
- Bayesian Inference of Globular Cluster Properties Using Distribution Functions
- Non-resonant relaxation of rotating globular clusters
- Hierarchical Bayesian Inference of Globular Cluster Properties
- Predicting Images for the Dynamics Of stellar Clusters (π-DOC): a deep learning framework to predict mass, distance and age of globular clusters
- The ESO-VLT MIKiS survey reloaded: velocity dispersion profile and rotation curve of NGC 1904
- Disruption of a Giant: Spectroscopic Identification of Members in the Periphery and Tidal Tails of Centauri
- Direct N-body simulations of rotating and extremely massive Population III star clusters