Star cluster versus field star formation in the nucleus of the prototype starburst galaxy M82
arXiv:0804.1913 · doi:10.1051/0004-6361:200809653
Abstract
We analyse high-resolution Hubble Space Telescope/Advanced Camera for Surveys imaging of the nuclear starburst region of M82, obtained as part of the Hubble Heritage mosaic made of this galaxy, in four filters (Johnson-Cousins equivalent B, V, and I broad bands, and an Halpha narrow-band filter), as well as subsequently acquired U-band images. We find a complex system of ~150 star clusters in the inner few 100 pc of the galaxy. We do not find any conclusive evidence of a cluster-formation epoch associated with the most recent starburst event, believed to have occurred about 4-6 Myr ago. This apparent evidence of decoupling between cluster and field-star formation is consistent with the view that star cluster formation requires special conditions. However, we strongly caution, and provide compelling evidence, that the `standard' simple stellar population analysis method we have used significantly underestimates the true uncertainties in the derived ages due to stochasticity in the stellar initial mass function and the corresponding sampling effects.
10 pages, A&A, in press
References in corpus (10)
- HST/STIS Spectroscopy of Five Super Star Clusters in the Starburst Galaxy M82
- Super Star Cluster Velocity Dispersions and Virial Masses in the M82 Nuclear Starburst
- On the Interpretation of the Age Distribution of Star Clusters in the Small Magellanic Cloud
- Hubble Space Telescope ACS mosaic of the prototypical starburst galaxy M82
- HST/STIS spectroscopy of the environment in the starburst core of M82
- A Comparison of Optical and Near-Infrared Colours of Magellanic Cloud Star Clusters with Predictions of Simple Stellar Population Models
- Gemini GMOS/IFU spectroscopy of NGC 1569 - II: Mapping the roots of the galactic outflow
- The pressure confined wind of the massive and compact superstar cluster M82-A1
- The Young Cluster Population of M82 Region B
- A "super" star cluster grown old: the most massive star cluster in the Local Group