The Early Expansion of Cluster Cores
arXiv:0806.1460 · doi:10.1111/j.1365-2966.2008.13547.x
Abstract
The observed properties of young star clusters, such as the core radius and luminosity profile, change rapidly during the early evolution of the clusters. Here we present observations of 6 young clusters in M51 where we derive their sizes using HST imaging and ages using deep Gemini-North spectroscopy. We find evidence for a rapid expansion of the cluster cores during the first 20 Myr of their evolution. We confirm this trend by including data from the literature of both Galactic and extra-galactic embedded and young clusters, and possible mechanisms (rapid gas removal, stellar evolutionary mass-loss, and internal dynamical heating) are discussed. We explore the implications of this result, focussing on the fact that clusters were more concentrated in the past, implying that their stellar densities were much higher and relaxation times correspondingly shorter. Thus, when estimating if a particular cluster is dynamically relaxed, (i.e. when determining if a cluster's mass segregation is due to primordial or dynamical processes), the current relaxation time is only an upper-limit, with the relaxation time likely being significantly shorter in the past.
9 pages, 5 figures, accepted MNRAS
References in corpus (14)
- Physical Properties of Wolf-Rayet Stars
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Black holes and core expansion in massive star clusters
- Intermediate to low-mass stellar content of Westerlund 1
- The effect of spiral arm passages on the evolution of stellar clusters
- The effect of stellar-mass black holes on the structural evolution of massive star clusters
- Mass segregation in very young open clusters -- A case study of NGC 2244 and NGC 6530
- The distance to the Orion Nebula Cluster
- A FLAMINGOS Deep Near Infrared Imaging Survey of the Rosette Complex I: Identification and Distribution of the Embedded Population
- Gemini Spectroscopic Survey of Young Star Clusters in Merging/Interacting Galaxies. II. NGC 3256 Clusters
- Anatomy of a Young Massive Star Cluster: NGC 1569-B
- A detailed study of the enigmatic cluster M82F
- The embedded cluster DBSB48 in the nebula Hoffleit18: comparison with Trumpler14
- Stellar Collisions in Young Clusters: Formation of (Very) Massive Stars?
Cited by in corpus (6)
- Dynamical mass segregation on a very short timescale
- A spectroscopic census of the M82 stellar cluster population
- Monte Carlo Simulations of Star Clusters - VI. The globular cluster NGC 6397
- Open cluster stability and the effects of binary stars
- A HST/WFPC2 survey of bright young clusters in M31. I. VdB0, a massive star cluster seen at ~= 25 Myr
- Mass segregation in young star clusters: can it be detected from the integrated photometric properties?