The spatial distribution of stars in open clusters
arXiv:0910.1478 · doi:10.1017/S1743921309991931
Abstract
In this work we study the internal spatial structure of 16 open clusters in the Milky Way spanning a wide range of ages. For this, we use the minimum spanning tree method (the Q parameter, which enables one to classify the star distribution as either radially or fractally clustered), King profile fitting, and the correlation dimension (Dc) for those clusters with fractal patterns. On average, clusters with fractal-like structure are younger than those exhibiting radial star density profiles. There is a significant correlation between Q and the cluster age measured in crossing time units. For fractal clusters there is a significant correlation between the fractal dimension and age. These results support the idea that stars in new-born clusters likely follow the fractal patterns of their parent molecular clouds, and eventually evolve toward more centrally concentrated structures. However, there can exist stellar clusters as old as 100 Myr that have not totally destroyed their fractal structure. Finally, we have found the intriguing result that the lowest fractal dimensions obtained for the open clusters seem to be considerably smaller than the average value measured in galactic molecular cloud complexes.
To appear in the proceedings of IAU Symposium 266: "Star Clusters: Basic Galactic Building Blocks Throughout Time And Space", eds. R. de Grijs and J. Lepine
References in corpus (8)
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- The spatial distribution of stars in open clusters
- The structures of embedded clusters in the Perseus, Serpens and Ophiuchus molecular clouds
- Spatial distribution of stars and brown dwarfs in sigma Orionis
- The Clustering Behavior of Pre-Main Sequence Stars in NGC 346 in the Small Magellanic Cloud
- The Fractal Distribution of HII Regions in Disk Galaxies
- Fractal dimension of interstellar clouds: opacity and noise effects
- The Nature of the Gould Belt from a Fractal Analysis of its Stellar Population