Why Haven't Loose Globular Clusters Collapsed Yet?
Open Access
- 29 January 2007
- journal article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 656 (2) , L65-L68
- https://doi.org/10.1086/512856
Abstract
We report on the discovery of a surprising observed correlation between the slope of the low-mass stellar global mass function (GMF) of globular clusters (GCs) and their central concentration parameter c=log(r_t/r_c), i.e. the logarithmic ratio of tidal and core radii. This result is based on the analysis of a sample of twenty Galactic GCs with solid GMF measurements from deep HST or VLT data. All the high-concentration clusters in the sample have a steep GMF, most likely reflecting their initial mass function. Conversely, low-concentration clusters tend to have a flatter GMF implying that they have lost many stars via evaporation or tidal stripping. No GCs are found with a flat GMF and high central concentration. This finding appears counter-intuitive, since the same two-body relaxation mechanism that causes stars to evaporate and the cluster to eventually dissolve should also lead to higher central density and possibly core-collapse. Therefore, more concentrated clusters should have lost proportionately more stars and have a shallower GMF than low concentration clusters, contrary to what is observed. It is possible that severely depleted GCs have also undergone core collapse and have already recovered a normal radial density profile. It is, however, more likely that GCs with a flat GMF have a much denser and smaller core than suggested by their surface brightness profile and may well be undergoing collapse at present. In either case, we may have so far seriously underestimated the number of post core-collapse clusters and many may be lurking in the Milky Way.Comment: Four pages, one figure, accepted for publication in ApJ LetterKeywords
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This publication has 27 references indexed in Scilit:
- Why is the mass function of NGC 6218 flat?Astronomy & Astrophysics, 2006
- Parameters of core collapseMonthly Notices of the Royal Astronomical Society, 2003
- The Spatially Resolved Mass Function of the Globular Cluster M22The Astrophysical Journal, 2002
- Deep [ITAL]Hubble Space Telescope[/ITAL] WFPC2 Photometry of NGC 288. II. The Main-Sequence Luminosity FunctionThe Astronomical Journal, 2002
- VLT observations of the peculiar globular cluster NGC 6712Astronomy & Astrophysics, 2001
- The Mass Function of Main‐Sequence Stars in NGC 6397 from Near‐Infrared and Optical High‐ResolutionHubble Space TelescopeObservationsThe Astrophysical Journal, 2000
- Evolution of globular clusters in the GalaxyThe Astrophysical Journal, 1990
- Gravothermal oscillations after core collapse in globular cluster evolutionThe Astrophysical Journal, 1989
- On the evolution of globular cluster systems. I - Present characteristics and rate of destruction in our GalaxyThe Astrophysical Journal, 1988
- Tidal heating of globular clustersThe Astrophysical Journal, 1986