The Sizes of Globular Clusters as Tracers of Galactic Halo Potentials
arXiv:1512.05764 · doi:10.3847/0004-637X/818/1/58
Abstract
We present -body simulations of globular clusters, exploring the effect of different galactic potentials on cluster sizes, . For various galactocentric distances, , we assess how cluster sizes change when we vary the virial mass and concentration of the host galaxy's dark-matter halo. We show that sizes of GCs are determined by the local galactic mass density rather than the virial mass of the host galaxy. We find that clusters evolving in the inner haloes of less concentrated galaxies are significantly more extended than those evolving in more concentrated ones, while the sizes of those orbiting in the outer halo are almost independent of concentration. Adding a baryonic component to our galaxy models does not change these results much, since its effect is only significant in the very inner halo. Our simulations suggest that there is a relation between and , which systematically depends on the physical parameters of the halo. Hence, observing such relations in individual galaxies can put a new observational constraint on dark-matter halo characteristics. However, by varying the halo mass in a wide range of $10^{9}\leq M_{vir}/\msun \leq10^{13}$, we find that the relationship will be nearly independent of halo mass, if one assumes and as two correlated parameters, as is suggested by cosmological simulations.
15 pages, 10 figures, 4 tables, Accepted for publication in ApJ
References in corpus (26)
- The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from Kinematics of ~2400 SDSS Blue Horizontal Branch Stars
- Black holes and core expansion in massive star clusters
- Globular Cluster Streams as Galactic High-Precision Scales - The Poster Child Palomar 5
- The AIMSS Project I: Bridging the Star Cluster - Galaxy Divide
- The life cycle of star cluster in a tidal field
- Variations in Stellar Clustering with Environment: Dispersed Star Formation and the Origin of Faint Fuzzies
- Why haven't loose globular clusters collapsed yet?
- Dark Matter Halos in Galaxies and Globular Cluster Populations. II: Metallicity and Morphology
- Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters
- Back to the Future: Estimating Initial Globular Cluster Masses from their Present Day Stellar Mass Functions
- Testing Fundamental Physics with Distant Star Clusters: Analysis of Observational Data on Palomar 14
- The state of globular clusters at birth II: primordial binaries
- Erosion of Globular Cluster Systems: The Influence of Radial Anisotropy, Central Black Holes and Dynamical Friction
- The Effect of Orbital Eccentricity on the Dynamical Evolution of Star Clusters
- The Main Sequence of Star Clusters
- The Effects of Orbital Inclination on the Scale Size and Evolution of Tidally Filling Star Clusters
- Direct -body simulations of globular clusters - II. Palomar 4
- The Size of Star Clusters Accreted by the Milky Way
- The inefficiency of satellite accretion in forming extended star clusters
- Possible smoking-gun evidence for initial mass segregation in re-virialized post-gas expulsion globular clusters
- A flexible method to evolve collisional systems and their tidal debris in external potentials
- Mass segregation in the outer halo globular cluster Palomar 14
- The effect of primordial mass segregation on the size scale of globular clusters
- Star Cluster Evolution in Dark Matter Dominated Galaxies
- How tidal erosion has shaped the relation between globular cluster specific frequency and galaxy luminosity
- Galactic orbital motions of star clusters: static versus semicosmological time-dependent Galactic potentials