The pressure confined wind of the massive and compact superstar cluster M82-A1
arXiv:0707.2771 · doi:10.1086/521706
Abstract
The observed parameters of the young superstar cluster M82-A1 and its associated compact HII region are here shown to indicate a low heating efficiency or immediate loss, through radiative cooling, of a large fraction of the energy inserted by stellar winds and supernovae during the early evolution of the cluster. This implies a bimodal hydrodynamic solution which leads to a reduced mass deposition rate into the ISM, with a much reduced outflow velocity. Furthermore, to match the observed parameters of the HII region associated to M82-A1, the resultant star cluster wind is here shown to ought to be confined by a high pressure interstellar medium. The cluster wind parameters, as well as the location of the reverse shock, its cooling length and the radius of the standing outer HII region are derived analytically. All of these properties are then confirmed with a semi-analytical integration of the flow equations, which provides us also with the run of the hydrodynamic variables as a function of radius. The impact of the results is discussed and extended to other massive and young superstar clusters surrounded by a compact HII region.
19 pages, 4 figures, accepted for publication in ApJ
References in corpus (5)
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- HST/STIS Spectroscopy of Five Super Star Clusters in the Starburst Galaxy M82
- On the hydrodynamics of the matter reinserted within superstellar clusters
- Super stellar clusters with a bimodal hydrodynamic solution: an Approximate Analytic Approach
Cited by in corpus (20)
- Two-Dimensional Hydrodynamic Models of Super Star Clusters with a Positive Star Formation Feedback
- Kinematics and Optical Depth in the Green Peas: Suppressed Superwinds in Candidate LyC Emitters
- Dense CO in Mrk 71-A: Superwind Suppressed in a Young Super Star Cluster
- Chemodynamics of Green Pea galaxies -- I. Outflows and turbulence driving the escape of ionising photons and chemical enrichment
- Catastrophic Cooling in Superwinds: Line Emission and Non-equilibrium Ionization
- On the impact of radiation pressure on the dynamics and inner structure of dusty wind-driven shells
- Star cluster versus field star formation in the nucleus of the prototype starburst galaxy M82
- Extremely massive young clusters in NGC1365
- On the Heating Efficiency Derived from Observations of Young Super Star Clusters in M82
- Non-equilibrium Ionization States Within Galactic Outflows: Explaining Their O VI and N V Column Densities
- Spectroscopy of CASSOWARY gravitationally-lensed galaxies in SDSS: characterisation of an extremely bright reionization-era analog at
- New Ionization Models and the Shocking Nitrogen Excess at z > 5
- An optical--near-IR study of a triplet of super star clusters in the starburst core of M82
- MOSEL Survey: Extremely weak outflows in EoR analogues at z=3-4
- Dust Buried Compact Sources in the Dwarf Galaxy NGC 4449
- Extreme Star Formation
- Can Dust Injected by SNe Explain the NIR-MIR Excess in Young Massive Stellar Clusters?
- Nebular C IV 1550 Imaging of the Metal-Poor Starburst Mrk 71: Direct Evidence of Catastrophic Cooling
- Recombination Lines of Embedded Star Clusters
- Catastrophic Cooling in Superwinds. II. Exploring the Parameter Space