Mass segregation in young star clusters: can it be detected from the integrated photometric properties?
arXiv:0801.0596 · doi:10.1111/j.1365-2966.2008.13859.x
Abstract
We consider the effect of mass segregation on the observable integrated properties of star clusters. The measurable properties depend on a combination of the dynamical age of the cluster and the physical age of the stars in the cluster. To investigate all possible combinations of these two quantities we propose an analytical model for the mass function of segregated star clusters that agrees with the results of N-body simulations, in which any combination can be specified. For a realistic degree of mass segregation and a fixed density profile we find with increasing age an increase in the measured core radii and a central surface brightness that decreases in all filters more rapidly than what is expected from stellar evolution alone. Within a Gyr the measured core radius increases by a factor of two and the central surface density in all filters of a segregated cluster will be overestimated by a similar factor when not taking into account mass segregation in the conversion from light to mass. We find that the colour of mass segregated clusters decreases with radius by about 0.1-0.2 mag, which could be observable. From recent observations of partially resolved extra-galactic clusters a decreasing half-light radius with increasing wavelength was observed, which was attributed to mass segregation. These observations can not be reproduced by our models. We find that the differences between measured radii in different filters are always smaller than 5%.
8 pages, 4 figures, accepted by MNRAS Main Journal
References in corpus (14)
- Multiple stellar populations in three rich Large Magellanic Cloud star clusters
- The Arches Cluster Mass Function
- Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters
- ACS imaging of star clusters in M51. I. Identification and radius distribution
- The Early Expansion of Cluster Cores
- The effect of stellar-mass black holes on the structural evolution of massive star clusters
- On the Mass of Dense Star Clusters in Starburst Galaxies from Spectro-Photometry
- The influence of gas expulsion and initial mass-segregation on the stellar mass-function of globular star clusters
- Anatomy of a Young Massive Star Cluster: NGC 1569-B
- A new method to create initially mass segregated star clusters in virial equilibrium
- Biases on initial mass function determinations. II. Real multiple systems and chance superpositions
- On the onset of runaway stellar collisions in dense star clusters I. Dynamics of the first collision
- A detailed study of the enigmatic cluster M82F
- Surface Brightness Profiles for a sample of LMC, SMC and Fornax galaxy Globular Clusters
Cited by in corpus (6)
- Sampling methods for stellar masses and the mmax-Mecl relation in the starburst dwarf galaxy NGC 4214
- The VLT-FLAMES Tarantula Survey: XXXI. Radial velocities and multiplicity constraints of red supergiant stars in 30 Doradus
- PPMXL photometric study of four open cluster candidates (Ivanov 2, Ivanov 7, Ivanov 9 and Harvard 9)
- The long-term evolution of main-sequence binaries in DRAGON simulations
- Deriving physical parameters of unresolved star clusters. VIII. Limits of aperture photometry for star cluster studies
- Assessing membership projection errors in star forming regions