The influence of gas expulsion and initial mass-segregation on the stellar mass-function of globular star clusters
arXiv:0803.0543 · doi:10.1111/j.1365-2966.2008.13165.x
Abstract
Recently de Marchi, Paresce & Pulone (2007) studied a sample of twenty globular clusters and found that all clusters with high concentrations have steep stellar mass-functions while clusters with low concentration have comparatively shallow mass-functions. No globular clusters were found with a flat mass-function and high concentration. This seems curious since more concentrated star clusters are believed to be dynamically more evolved and should have lost more low-mass stars via evaporation, which would result in a shallower mass-function in the low-mass part. We show that this effect can be explained by residual-gas expulsion from initially mass-segregated star clusters, and is enhanced further through unresolved binaries. If gas expulsion is the correct mechanism to produce the observed trend, then observation of these parameters would allow to constrain cluster starting conditions such as star formation efficiency and the time-scale of gas expulsion.
accepted for publication in MNRAS, 10 pages, 6 figures
References in corpus (6)
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Why haven't loose globular clusters collapsed yet?
- Mass segregation in very young open clusters -- A case study of NGC 2244 and NGC 6530
- The Origin of the Arches Stellar Cluster Mass Function
- The Stellar Mass Distribution in the Giant Star Forming Region NGC 346
- A new method to create initially mass segregated star clusters in virial equilibrium
Cited by in corpus (19)
- Evidence for primordial mass segregation in globular clusters
- Dense Stellar Populations: Initial Conditions
- Testing Fundamental Physics with Distant Star Clusters: Analysis of Observational Data on Palomar 14
- The Complete Initial Mass Function Down to the Sub-Solar Regime in the Large Magellanic Cloud with Hubble Space Telescope ACS Observations
- Asymmetrical tidal tails of open star clusters: stars crossing their cluster's prah challenge Newtonian gravitation
- Generation of massive stellar black holes by rapid gas accretion in primordial dense clusters
- Direct -body simulations of globular clusters - II. Palomar 4
- Stellar dynamics in gas: The role of gas damping
- Tidal tails of open star clusters as probes to early gas expulsion I: A semi-analytic model
- Quantifying the Universality of the Stellar Initial Mass Function in Old Star Clusters
- Stellar mass segregation as separating classifier between globular clusters and ultra-faint dwarf galaxies
- Radial Variation in the Stellar Mass Functions of Star Clusters
- Mass segregation in the outer halo globular cluster Palomar 14
- The effect of primordial mass segregation on the size scale of globular clusters
- Mass segregation in young star clusters: can it be detected from the integrated photometric properties?
- Tracing the Origins of Mass Segregation in M35: Evidence for Primordially Segregated Binaries
- Galactic orbital motions of star clusters: static versus semicosmological time-dependent Galactic potentials
- Compact object populations over cosmic time I. BOSSA: a Binary Object environment-Sensitive Sampling Algorithm
- Dynamical mixing of two stellar populations in globular clusters