The initial mass distribution of the M82 star cluster system
arXiv:astro-ph/0509721 · doi:10.1111/j.1365-2966.2005.09640.x
Abstract
We explore whether we can constrain the shape of the INITIAL mass distribution of the star cluster population in M82's ~1 Gyr-old post-starburst region "B", in which the present-day cluster mass function (CMF) is closely approximated by a log-normal distribution. We conclude that the M82 B initial CMF must have had a mean mass very close to that of the "equilibrium" CMF of Vesperini (1998). Consequently, if the presently observed M82 B CMF has remained approximately constant since its formation, as predicted, then the INITIAL CMF must have been characterized by a mean mass that was only slightly larger than the present mean mass. From our detailed analysis of the expected evolution of CMFs, we conclude that our observations of the M82 B CMF are inconsistent with a scenario in which the 1 Gyr-old cluster population originated from an initial power-law mass distribution. Our conclusion is supported by arguments related to the initial density in M82 B, which would have been unphysically high if the present cluster population were the remains of an initial power-law distribution.
10 pages, 4 figures, accepted for publication in MNRAS
References in corpus (4)
- An analytical description of the disruption of star clusters in tidal fields with an application to Galactic open clusters
- The Star Cluster Population of M51: III. Cluster disruption and formation history
- A wide-field photometric study of the globular cluster system of NGC 4636
- New Light on the Initial Mass Function of the Galactic Halo Globular Clusters
Cited by in corpus (21)
- The Antennae Galaxies (NGC 4038/4039) Revisited: ACS and NICMOS Observations of a Prototypical Merger
- Star Cluster Demographics. I. A General Framework and Application to the Antennae Galaxies
- How well do we know the age and mass distributions of the star cluster system in the Large Magellanic Cloud?
- The Origin of the Gaussian Initial Mass Function of Old Globular Cluster Systems
- IRAC and MIPS Observations of the Interacting Galaxies IC 2163 and NGC 2207: Clumpy Emission
- Resolving the Stellar Populations in the Circumnuclear Ring of NGC 7469
- The poorly constrained cluster disruption time-scale in the Large Magellanic Cloud
- Characteristic radii of the Milky Way Globular Clusters
- Biases on initial mass function determinations. III. Cluster masses derived from unresolved photometry
- HST/ACS imaging of M82: A comparison of mass and size distribution functions of the younger nuclear and older disk clusters
- The Young Cluster Population of M82 Region B
- An updated catalog of M31 globular-like clusters: UBVRI photometry, ages, and masses
- The Young Star Cluster System in the Antennae: Evidence for a Turnover in the luminosity function
- Young and intermediate-age massive star clusters
- Gemini Spectroscopy and HST Imaging of the Stellar Cluster Population in Region B of M82
- Enlightening the dynamical evolution of Galactic open clusters: an approach using Gaia DR3 and analytical descriptions
- Astrophysics in 2006
- Star cluster disruption in the starburst galaxy Messier 82
- Arp 116: Interacting System or Chance Alignment?
- Star Cluster Evolution: From young massive star clusters to old globulars
- From nuclear clusters to halo globulars: Star clusters as basic galactic building blocks