Feedback in the Antennae Galaxies (NGC 4038/9): I. High-Resolution Infrared Spectroscopy of Winds from Super Star Clusters
arXiv:0706.3935 · doi:10.1086/520910
Abstract
We present high-resolution (R ~ 24,600) near-IR spectroscopy of the youngest super star clusters (SSCs) in the prototypical starburst merger, the Antennae Galaxies. These SSCs are young (3-7 Myr old) and massive (10^5 - 10^7 M_sun for a Kroupa IMF) and their spectra are characterized by broad, extended Br-gamma emission, so we refer to them as emission-line clusters (ELCs) to distinguish them from older SSCs. The Brgamma lines of most ELCs have supersonic widths (60-110 km/s FWHM) and non-Gaussian wings whose velocities exceed the clusters' escape velocities. This high-velocity unbound gas is flowing out in winds that are powered by the clusters' massive O and W-R stars over the course of at least several crossing times. The large sizes of some ELCs relative to those of older SSCs may be due to expansion caused by these outflows; many of the ELCs may not survive as bound stellar systems, but rather dissipate rapidly into the field population. The observed tendency of older ELCs to be more compact than young ones is consistent with the preferential survival of the most concentrated clusters at a given age.
Accepted to ApJ
References in corpus (1)
Cited by in corpus (12)
- The Dynamics of Radiation Pressure-Dominated HII Regions
- The mass function of young star clusters in spiral galaxies
- Photoionization Models for the Semi-Forbidden C III] 1909 Emission in Star-Forming Galaxies
- Two-Dimensional Hydrodynamic Models of Super Star Clusters with a Positive Star Formation Feedback
- The formation of secondary stellar generations in massive young star clusters from rapidly cooling shocked stellar winds
- Structure and Expansion Law of HII Regions in structured Molecular Clouds
- Radiation-pressure-driven dust waves inside bursting interstellar bubbles
- Kiloparsec-scale Variations in the Star Formation Efficiency of Dense Gas: the Antennae Galaxies (NGC 4038/39)
- Caught in formation: the nuclear-cluster-to-be in NGC 2139
- Ubiquitous Water Masers in Nearby Star-Forming Galaxies
- The Youngest Globular Clusters
- Recombination Lines of Embedded Star Clusters