Characteristic radii of the Milky Way Globular Clusters
arXiv:1909.01718 · doi:10.1093/mnras/stz2499
Abstract
We report on the extent of the effects of the Milky Way's gravitational field in shaping the structural parameters and internal dynamics of its globular cluster population. We make use of a homogeneous, up-to-date data set with kinematics, structural properties, current and initial masses of 156 globular clusters. In general, cluster radii increase as the Milky Way potential weakens; with the core and Jacobi radii being those which increase at the slowest and fastest rate respectively. We interpret this result as the innermost regions of globular clusters being less sensitive to changes in the tidal forces with the Galactocentric distance. The Milky Way's gravitational field also seems to have differentially accelerated the internal dynamical evolution of individual clusters, with those toward the bulge appearing dynamically older. Finally we find a sub-population consisting of both compact and extended globular clusters (as defined by their rh/rJ ratio) beyond 8 kpc that appear to have lost a large fraction of their initial mass lost via disruption. Moreover, we identify a third group with rh/rJ > 0.4, which have lost an even larger fraction of their initial mass by disruption. In both cases the high fraction of mass lost is likely due to their large orbital eccentricities and inclination angles, which lead to them experiencing more tidal shocks at perigalacticon and during disc crossings. Comparing the structural and orbital parameters of individual clusters allows for constraints to be placed on whether or not their evolution was relaxation or tidally dominated.
13 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (17)
- galpy: A Python Library for Galactic Dynamics
- Star cluster disruption by giant molecular clouds
- The life cycle of star cluster in a tidal field
- Lifetimes of tidally limited star clusters with different radii
- Globular Cluster Systems in Giant Ellipticals: the Mass/Metallicity Relation
- The origin of the Milky Way globular clusters
- The effect of spiral arm passages on the evolution of stellar clusters
- A comprehensive Nbody study of mass segregation in star clusters: Energy equipartition and escape
- On the Interpretation of the Age Distribution of Star Clusters in the Small Magellanic Cloud
- Erosion of Globular Cluster Systems: The Influence of Radial Anisotropy, Central Black Holes and Dynamical Friction
- The Effects of Orbital Inclination on the Scale Size and Evolution of Tidally Filling Star Clusters
- The Size of Star Clusters Accreted by the Milky Way
- The inefficiency of satellite accretion in forming extended star clusters
- Dynamical friction in multi-component evolving globular clusters
- Formation imprints in the kinematics of the Milky Way globular cluster system
- Modelling the Observed Stellar Mass Function and its Radial Variation in Galactic Globular Clusters
- Modelling the Effects of Dark Matter Substructure on Globular Cluster Evolution with the Tidal Approximation
Cited by in corpus (25)
- On the tidal tails of Milky Way globular clusters
- Star density profiles of six old star clusters in the Large Magellanic Cloud
- APOGEE discovery of a chemically atypical star disrupted from NGC 6723 and captured by the Milky Way bulge
- The VISCACHA survey -- II. Structure of star clusters in the Magellanic Clouds periphery
- Enlightening the dynamical evolution of Galactic open clusters: an approach using Gaia DR3 and analytical descriptions
- The orbital evolution of UFDs and GCs in an evolving Galactic potential
- Stellar cluster formation in a Milky Way-sized galaxy at z>4 -- I. The proto-globular cluster population and the imposter amongst us
- Signatures of tidal disruption in the Milky Way globular cluster NGC 6981 (M72)
- Pal 13: its moderately extended low density halo and its accretion history
- The elusive tidal tails of the Milky Way globular cluster NGC 7099
- The disruption of the low-mass globular cluster E3
- Dynamical evolution of Milky Way globular clusters on the cosmological timescale I. Mass loss and interaction with the nuclear star cluster
- The surroundings of the Milky Way globular cluster NGC 6809
- A binary star sequence in the outskirts of the disrupting Galactic open cluster UBC 274
- On the structure of Small Magellanic Cloud star clusters
- The spatial distributions of blue main-sequence stars in Magellanic Cloud star clusters
- First evidence of a stripped star cluster from the Small Magellanic Cloud
- DECam photometry reveals extra-tidal stars around the Milky Way globular cluster NGC 6864 (M75)
- The dual nature of the tidal tails of NGC 5904 (M5)
- On the physical size of the Milky Way globular cluster NGC 7089 (M 2)
- Different Sodium enhancements among multiple populations of Milky Way globular clusters
- Discovery of rotation axis alignments in Milky Way globular clusters
- DELVE-ing into the Milky Way's Globular Clusters: Assessing extra-tidal features in NGC 5897, NGC 7492, and testing detectability with deeper photometry
- Probing the farthest star clusters to the Small Magellanic Cloud
- Nature and nurture: the dynamical ages of in situ and accreted globular clusters in the Milky Way