Two physical regimes for the Giant HII Regions and Giant Molecular Clouds in the Antennae Galaxies
arXiv:1409.1251 · doi:10.1093/mnras/stu1847
Abstract
We have combined observations of the Antennae galaxies from the radio interferometer ALMA (Atacama Large Millimeter/submillimeter Array) and from the optical interferometer GHFaS (Galaxy H Fabry-Perot System). The two sets of observations have comparable angular and spectral resolutions, enabling us to identify 142 giant molecular clouds (GMCs) and 303 HII regions. We have measured, and compared, their basic physical properties (radius, velocity dispersion, luminosity). For the HII regions, we find two physical regimes, one for masses of ionized gas, where the gas density increases with gas mass, the other for masses of ionized gas, where the gas density decreases with gas mass. For the GMCs, we find, in contrast to previous studies in other galaxies over a generally lower mass range of clouds, that the gas surface density increases with the radius, hinting at two regimes for these clouds if we consider both sources of data. We also find that the GMC mass function has a break at . Using the velocity dispersion measurements, we claim that the difference between the regimes is the nature of the dominant binding force. For the regions in the lower mass range, the dominant force is the external pressure, while in the higher mass range it is the internal gravity of the clouds. In the regime where gravity is dominant, the star formation rate, derived from the dust-corrected H luminosity, increases super-linearly with the velocity dispersion, and the gas density increases with the gas mass.
Error found in linear fit (equation 7) is amended
References in corpus (8)
- Structural Analysis of Molecular Clouds: Dendrograms
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Bias-free Measurement of Giant Molecular Cloud Properties
- The relation for massive bursts of star formation
- A composite HII region luminosity function in H alpha of unprecedented statistical weight
- Improved 3D Fabry-Perot Data Reduction Techniques
- The interstellar medium of the Antennae Galaxies
- Kinematics of Arp 270: gas flows, nuclear activity and two regimes of star formation
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