A statistical study of the mass and density structure of Infrared Dark Clouds
arXiv:1009.0716 · doi:10.1088/0004-637X/723/1/555
Abstract
How and when the mass distribution of stars in the Galaxy is set is one of the main issues of modern astronomy. Here we present a statistical study of mass and density distributions of infrared dark clouds (IRDCs) and fragments within them. These regions are pristine molecular gas structures and progenitors of stars and so provide insights into the initial conditions of star formation. This study makes use of a IRDC catalogue (Peretto & Fuller 2009), the largest sample of IRDC column density maps to date, containing a total of ~11,000 IRDCs with column densities exceeding N_{H2} = 1 X10^{22} cm^{-2} and over 50,000 single peaked IRDC fragments. The large number of objects constitutes an important strength of this study, allowing detailed analysis of the completeness of the sample and so statistically robust conclusions. Using a statistical approach to assigning distances to clouds, the mass and density distributions of the clouds and the fragments within them are constructed. The mass distributions show a steepening of the slope when switching from IRDCs to fragments, in agreement with previous results of similar structures. IRDCs and fragments are divided into unbound/bound objects by assuming Larson's relation and calculating their virial parameter. IRDCs are mostly gravitationally bound, while a significant fraction of the fragments are not. The density distribution of gravitationally unbound fragments shows a steep characteristic slope. (see paper for full Abstract).
15 pages, accepted for publication in ApJ
References in corpus (6)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- Structural Analysis of Molecular Clouds: Dendrograms
- The Mass Distribution and Lifetime of Prestellar Cores in Perseus, Serpens, and Ophiuchus
- The Perils of Clumpfind: The Mass Spectrum of Sub-structures in Molecular Clouds
- High Mass Star Formation. II. The Mass Function of Submillimeter Clumps in M17
Cited by in corpus (49)
- High-Mass Star and Massive Cluster Formation in the Milky Way
- Global collapse of molecular clouds as a formation mechanism for the most massive stars
- Turbulent molecular clouds
- SDC13 infrared dark clouds: Longitudinally collapsing filaments?
- The ATLASGAL survey: a catalog of dust condensations in the Galactic plane
- Ammonia from cold high-mass clumps discovered in the inner Galactic disk by the ATLASGAL survey
- Planck Early Results: The Galactic Cold Core Population revealed by the first all-sky survey
- Properties of Hi-GAL clumps in the inner Galaxy]{The Hi-GAL compact source catalogue. I. The physical properties of the clumps in the inner Galaxy ()
- Characterizing Precursors to Stellar Clusters with Herschel
- High-dynamic-range extinction mapping of infrared dark clouds: Dependence of density variance with sonic Mach number in molecular clouds
- Hierarchical Fragmentation and Jet-like Outflows in IRDC G28.34+0.06, a Growing Massive Protostar Cluster
- The Bones of the Milky Way
- Variations of the stellar initial mass function in the progenitors of massive early-type galaxies and in extreme starburst environments
- The Earliest Phases of Star Formation (EPoS): A Herschel Key Program - The precursors to high-mass stars and clusters
- The Dust Properties of Bubble HII Regions as seen by Herschel
- First results from the Herschel Gould Belt Survey in Taurus
- The Herschel view of massive star formation in G035.39--00.33: Dense and cold filament of W48 undergoing a mini-starburst
- Analytical theory for the initial mass function: III time dependence and star formation rate
- ATLASGAL - Kinematic distances and the dense gas mass distribution of the inner Galaxy
- Mapping Large-Scale CO Depletion in a Filamentary Infrared Dark Cloud
- Understanding star formation in molecular clouds II. Signatures of gravitational collapse of IRDCs
- Search for starless clumps in the ATLASGAL survey
- The Bolocam Galactic Plane Survey V: HCO+ and N2H+ Spectroscopy of 1.1 mm Dust Continuum Sources
- Gas Kinematics and Excitation in the Filamentary IRDC G035.39-00.33
- Kinematic structure of massive star-forming regions - I. Accretion along filaments
- The Initial Conditions of Stellar Protocluster Formation: III. The Herschel counterparts of the Spitzer Dark Cloud catalogue
- Mass reservoirs surrounding massive infrared dark clouds: A view by near-infrared dust extinction
- ALMA-IRDC: Dense gas mass distribution from cloud to core scales
- Deuterium Fractionation as an Evolutionary Probe in Massive Proto-stellar/cluster Cores
- Probing the Interstellar Dust towards the Galactic Centre: Dust Scattering Halo around AX J1745.6-2901
- Fragmentation and filaments at the onset of star and cluster formation: SABOCA 350 m view of ATLASGAL selected massive clumps
- Relationship between the column density distribution and evolutionary class of molecular clouds as viewed by ATLASGAL
- LABOCA 870 micron dust continuum mapping of selected infrared-dark cloud regions in the Galactic plane
- SiO emission as a probe of Cloud-Cloud Collisions in Infrared Dark Clouds
- Structure formation in a colliding flow: The Herschel view of the Draco nebula
- The Bolocam Galactic Plane Survey. XIII. Physical Properties and Mass Functions of Dense Molecular Cloud Structures
- The SEDIGISM survey: Molecular cloud morphology. I. Classification and star formation
- The mid-infrared environments of 6.7 GHz Methanol Masers from the Methanol Multi-Beam Survey
- Star Formation Activity in the Long, Filamentary Infrared Dark Cloud G53.2
- G048.66-0.29: Physical State of an Isolated Site of Massive Star Formation
- The Clump Mass Function of the Dense Clouds in the Carina Nebula Complex
- Isolated starless cores in IRDCs in the Hi-GAL survey
- Infrared Dark Clouds and high-mass star formation activity in Galactic Molecular Clouds
- The mass distribution of clumps within infrared dark clouds. A Large APEX Bolometer Camera study
- Deuteration in infrared dark clouds
- Maser Emission toward the Infrared Dark Cloud G359.94+0.17 Seen in Silhouette against the Galactic Center
- A Galactic Molecular Cloud Clump Catalog from Hi-GAL Data: Method and Initial Results Comparison to BGPS
- Northern Galactic Molecular Cloud Clumps in Hi-GAL: Dense Gas Map and Environmental Trends
- Massive Young Stellar Objects and Outflow in the Infrared-Dark Cloud G79.3+0.3