Physical properties of Southern infrared dark clouds
arXiv:0902.1772 · doi:10.1051/0004-6361/200811226
Abstract
It is commonly assumed that cold and dense Infrared Dark Clouds (IRDCs) likely represent the birth sites massive stars. Therefore, this class of objects gets increasing attention. To enlarge the sample of well-characterised IRDCs in the southern hemisphere, we have set up a program to study the gas and dust of southern IRDCs. The present paper aims at characterizing the continuuum properties of this sample of objects. We cross-correlated 1.2 mm continuum data from SIMBA@SEST with Spitzer/GLIMPSE images to establish the connection between emission sources at millimeter wavelengths and the IRDCs we see at 8 m in absorption against the bright PAH background. Analysing the dust emission and extinction leads to a determination of masses and column densities, which are important quantities in characterizing the initial conditions of massive star formation. The total masses of the IRDCs were found to range from 150 to 1150 (emission data) and from 300 to 1750 (extinction data). We derived peak column densities between 0.9 and 4.6 cm (emission data) and 2.1 and 5.4 cm (extinction data). We demonstrate that the extinction method fails for very high extinction values (and column densities) beyond A values of roughly 75 mag according to the Weingartner & Draine (2001) extinction relation model B. The derived column densities, taking into account the spatial resolution effects, are beyond the column density threshold of 3.0 cm required by theoretical considerations for massive star formation. We conclude that the values for column densities derived for the selected IRDC sample make these objects excellent candidates for objects in the earliest stages of massive star formation.
Accepted for publication in Astronomy & Astrophysics
References in corpus (2)
Cited by in corpus (43)
- ATLASGAL - The APEX Telescope Large Area Survey of the Galaxy at 870 microns
- Probing the evolution of molecular cloud structure: From quiescence to birth
- ATLASGAL - Compact source catalogue: 330 < l < 21 degrees
- The ATLASGAL survey: a catalog of dust condensations in the Galactic plane
- High-dynamic-range extinction mapping of infrared dark clouds: Dependence of density variance with sonic Mach number in molecular clouds
- The Earliest Phases of Star Formation (EPoS): A Herschel Key Program - The precursors to high-mass stars and clusters
- Chemistry in Infrared Dark Clouds
- New extended deuterium fractionation model: assessment at dense ISM conditions and sensitivity analysis
- The Panchromatic Hubble Andromeda Treasury VIII: A Wide-Area, High-Resolution Map of Dust Extinction in M31
- Complex, Quiescent Kinematics in a Highly Filamentary Infrared Dark Cloud
- Search for starless clumps in the ATLASGAL survey
- Very Large Array Observations of Ammonia in Infrared-Dark Clouds I: Column Density and Temperature Structure
- Star formation in the Taurus filament L1495: From Dense Cores to Stars
- Giant molecular filaments in the Milky Way II: The fourth Galactic quadrant
- A statistical study of the mass and density structure of Infrared Dark Clouds
- High CO depletion in southern infrared-dark clouds
- Kinematic structure of massive star-forming regions - I. Accretion along filaments
- Very Large Array Observations of Ammonia in Infrared-Dark Clouds II: Internal Kinematics
- Mass reservoirs surrounding massive infrared dark clouds: A view by near-infrared dust extinction
- Deuterium fractionation and the degree of ionisation in massive clumps within infrared dark clouds
- Outflow detection in a 70 m dark high-mass core
- Organic species in Infrared Dark Clouds
- High-mass Starless Clumps in the inner Galactic Plane: the Sample and Dust Properties
- Are Infrared Dark Clouds Really Quiescent?
- ALMA-IRDC: Dense gas mass distribution from cloud to core scales
- Chemical modeling of Infrared Dark Clouds: the Role of Surface Chemistry
- A Systemic Study of 14 Southern Infrared Dark Clouds with the N2H+, HNC, HCO+, and HCN Lines
- ATLASGAL - Ammonia observations towards the southern Galactic Plane
- Stochastic grain heating and mid-infrared emission in protostellar cores
- Triggered/sequential star formation? A multi-phase ISM study around the prominent IRDC G18.93-0.03
- LABOCA mapping of the infrared dark cloud MSXDC G304.74+01.32
- The structured environments of embedded star-forming cores. PACS and SPIRE mapping of the enigmatic outflow source UYSO 1
- Similar complex kinematics within two massive, filamentary infrared dark clouds
- High-mass star formation at high luminosities: W31 at >10^6 L_sun
- Physical properties, kinetics and mass function of 12 northern infrared dark clouds
- A large, massive, rotating disk around an isolated young stellar object
- G048.66-0.29: Physical State of an Isolated Site of Massive Star Formation
- Kinematic and Thermal Structure at the onset of high-mass star formation
- Determining the Parameters of Massive Protostellar Clouds via Radiative Transfer Modeling
- Infrared spectroscopy of intermediate mass young stellar objects
- A multiwavelength view of the protostellar binary IRAS04325+2402: a case for turbulent fragmentation
- Physical and chemical properties of Red MSX Sources in the southern sky: HII regions
- What did the seahorse swallow? APEX 170 GHz observations of the chemical conditions in the Seahorse infrared dark cloud