The Fractal Distribution of HII Regions in Disk Galaxies
arXiv:0804.4554 · doi:10.1086/589653
Abstract
It is known that the gas has a fractal structure in a wide range of spatial scales with a fractal dimension that seems to be a constant around Df = 2.7. It is expected that stars forming from this fractal medium exhibit similar fractal patterns. Here we address this issue by quantifying the degree to which star-forming events are clumped. We develop, test, and apply a precise and accurate technique to calculate the correlation dimension Dc of the distribution of HII regions in a sample of disk galaxies. We find that the determination of Dc is limited by the number of HII regions, since if there are < 100 regions available then a bias tending to underestimate the dimension is produced. The reliable results are distributed in the range 1.5 < Dc < 2.0 with an average value Dc = 1.81. This corresponds to a three-dimensional dimension of Df = 2.73, very similar to the value measured in the interstellar clouds. However, we get significant variations in the fractal dimension among galaxies, contrary to a universal picture sometimes claimed in literature. The fractal dimension exhibits a weak but significant correlation with the absolute magnitude and, to a lesser extent, with the galactic radius. The faintest galaxies tend to distribute their HII regions in more clustered (less uniform) patterns. The fractal dimension for the brightest HII regions within the same galaxy seems to be smaller than for the faintest ones suggesting some kind of evolutionary efffect, but the obtained correlation remains unchanged if only the brightest regions are taken into account.
41 pages including 6 figures and 5 tables. Accepted for publication in ApJS
References in corpus (10)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- Hierarchical Star Formation in the Spiral Galaxy NGC 628
- Hierarchical Star-Formation in M33: Fundamental properties of the star-forming regions
- Power spectrum of HI intensity fluctuations in DDO 210
- A composite HII region luminosity function in H alpha of unprecedented statistical weight
- HI power spectrum of the spiral galaxy NGC628
- The Star Formation Law in a Multifractal ISM
- The Nature of the Gould Belt from a Fractal Analysis of its Stellar Population
- The Correlation Dimension of Young Stars in Dwarf Galaxies
Cited by in corpus (12)
- The Spatial Relation between Young Star Clusters and Molecular Clouds in M 51 with LEGUS
- Hierarchical Star Formation in Nearby LEGUS Galaxies
- The fractal dimension of star-forming regions at different spatial scales in M33
- Determining the extragalactic extinction law with SALT. II. Additional sample
- Analytical core mass function (CMF) from filaments: Under which circumstances can filament fragmentation reproduce the CMF?
- The Dependence of the Hierarchical Distribution of Star Clusters on Galactic Environment
- Hierarchical star formation in nearby galaxies
- The VMC survey -- XLVII. Turbulence-Controlled Hierarchical Star Formation in the Large Magellanic Cloud
- Fractal dimension and turbulence in Giant HII Regions
- Topography of the Young Galactic Disk: Spatial and Kinematic Patterns of the Clustered Star Formation in the Solar Neighborhood
- Robust Cross-correlation-based Measurement of Clump Sizes in Galaxies
- Cloud structure and young star distribution in the Dragonfish complex