Chemistry in Infrared Dark Clouds
arXiv:1012.0961 · doi:10.1051/0004-6361/201014974
Abstract
Massive stars play an important role in shaping the structure of galaxies. Infrared dark clouds (IRDCs), with their low temperatures and high densities, have been identified as the potential birthplaces of massive stars. In order to understand the formation processes of massive stars the physical and chemical conditions in infrared dark clouds have to be characterized. The goal of this paper is to investigate the chemical composition of a sample of southern infrared dark clouds. One important aspect of the observations is to check, if the molecular abuncances in IRDCs are similar to the low-mass pre-stellar cores, or whether they show signatures of more evolved evolutionary stages. We performed observations toward 15 IRDCs in the frequency range between 86 and 93 GHz using the 22-m Mopra radio telescope. We detect HNC, HCO and HNC emission in all clouds and NH in all IRDCs except one. In some clouds we detect SiO emission. Complicated shapes of the HCO emission line profile are found in all IRDCs. Both signatures indicates the presence of infall and outflow motions and beginning of star formation activity, at least in some parts of the IRDCs. Where possible, we calculate molecular abundances and make a comparison with previously obtained values for low-mass pre-stellar cores and high-mass protostellar objects (HMPOs). We show a tendency for IRDCs to have molecular abundances similar to low-mass pre-stellar cores rather than to HMPOs abundances on the scale of our single-dish observations.
accepted for publication in Astronomy & Astrophysics
References in corpus (11)
- A Catalog of Extended Green Objects (EGOs) in the GLIMPSE Survey: A new sample of massive young stellar object outflow candidates
- A Minimum Column Density of 1 g cm^-2 for Massive Star Formation
- On the internal structure of starless cores. II. A molecular survey of L1498 and L1517B
- Discovery of Fulminic Acid, HCNO, in Dark Clouds
- Ethynyl (C2H) in massive star formation: Tracing the initial conditions?
- An Infrared through Radio Study of the Properties and Evolution of IRDC Clumps
- A Molecular Line Observation toward Massive Clumps Associated with Infrared Dark Clouds
- Spectral imaging of the Sagittarius B2 region in multiple 3-mm molecular lines with the Mopra telescope
- Molecular Line Observations of Infrared Dark Clouds: Seeking the Precursors to Intermediate and Massive Star Formation
- A Jet-like Outflow toward the High-Mass (Proto)stellar Object IRAS 18566+0408
- Detection of SiO emission from a massive dense cold core
Cited by in corpus (70)
- Filamentary Accretion Flows in the Embedded Serpens South Protocluster
- Chemistry in Infrared Dark Cloud Clumps: a Molecular Line Survey at 3 mm
- Chemical evolution in the early phases of massive star formation. I
- The Earliest Phases of Star Formation (EPoS): A Herschel Key Program - The precursors to high-mass stars and clusters
- The Galactic Center Cloud G0.253+0.016: A Massive Dense Cloud with low Star Formation Potential
- ATLASGAL-selected massive clumps in the inner Galaxy, II: Characterisation of different evolutionary stages and their SiO emission
- Complex, Quiescent Kinematics in a Highly Filamentary Infrared Dark Cloud
- Chemical Evolution in High-Mass Star-Forming Regions: Results from the MALT90 Survey
- Distinct Chemical Regions in the "Prestellar" Infrared Dark Cloud (IRDC) G028.23-00.19
- Search for starless clumps in the ATLASGAL survey
- G0.253+0.016: A centrally condensed, high-mass protocluster
- The thermal reactivity of HCN and NH3 in interstellar ice analogues
- Investigating the structure and fragmentation of a highly filamentary IRDC
- Hydrogenation at low temperatures does not always lead to saturation: the case of HNCO
- Gas Kinematics and Excitation in the Filamentary IRDC G035.39-00.33
- Line Profiles of Cores within Clusters: II Signatures of Dynamical Collapse during High Mass Star Formation
- Massive 70 micron quiet clumps II: non-thermal motions driven by gravity in massive star formation?
- A MALT90 study of the chemical properties of massive clumps and filaments of infrared dark clouds
- Kinematic structure of massive star-forming regions - I. Accretion along filaments
- Initial phases of massive star formation in high infrared extinction clouds. II. Infall and onset of star formation
- Feedback from OB stars on their parent cloud: Gas exhaustion rather than gas ejection
- DNC/HNC Ratio of Massive Clumps in Early Evolutionary Stages of High-Mass Star Formation
- Diversity of chemistry and excitation conditions in the high-mass star forming complex W33
- Deuterium fractionation and the degree of ionisation in massive clumps within infrared dark clouds
- Organic species in Infrared Dark Clouds
- The Spatial Distribution of Organics toward the High-Mass YSO NGC 7538 IRS9
- Are Infrared Dark Clouds Really Quiescent?
- ALMA observations of NGC 6334S I: Forming massive stars and cluster in subsonic and transonic filamentary clouds
- ATLASGAL --- Molecular fingerprints of a sample of massive star forming clumps
- 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
- Dense gas in molecular cores associated with Planck Galactic cold clumps
- The Physical Properties of High-Mass Star-Forming Clumps: A Systematic Comparison of Molecular Tracers
- APEX/SABOCA observations of small-scale structure of infrared-dark clouds I. Early evolutionary stages of star-forming cores
- Triggered/sequential star formation? A multi-phase ISM study around the prominent IRDC G18.93-0.03
- Negative and Positive Feedback from a Supernova Remnant with SHREC: A detailed Study of the Shocked Gas in IC443
- A molecular line study towards massive extended green object clumps in the southern sky: chemical properties
- Fragmentation and Kinematics of dense molecular cores in the filamentary infrared-dark cloud G011.11-0.12
- Discovery of a mid-infrared protostellar outburst of exceptional amplitude
- The chemical structure of young high-mass star-forming clumps: (I) Deuteration
- Star formation activity in the Galactic H II region Sh2-297
- Investigating the Complex Velocity Structures within Dense Molecular Cloud Cores with GBT-Argus
- Different Evolutionary Stages in the Massive Star Forming Region W3 Main Complex
- Molecules in η Carinae
- Sulfur-bearing molecules in Orion KL
- The First Mid-Infrared Detection of HNC in the Interstellar Medium: Probing the Extreme Environment Towards the Orion Hot Core
- Initial phases of high-mass star formation: A multiwavelength study towards the extended green object G12.42+0.50
- In search of infall motion in molecular clumps III: HCO+ (1-0) and H13CO+ (1-0) mapping observations toward the confirmed infall sources
- Chemical evolution of Red MSX Sources in the southern sky
- Physical properties, kinetics and mass function of 12 northern infrared dark clouds
- G048.66-0.29: Physical State of an Isolated Site of Massive Star Formation
- Infrared dust bubble CS51 and its interaction with the surrounding interstellar medium
- In Search for Infall Motion in molecular clumps II: HCO+ (1-0) and HCN (1-0) Observations toward a Sub-sample of Infall Candidates
- Star formation in Chamaeleon I and III: a molecular line study of the starless core population
- SiO: Not the perfect outflow tracer: Outflow studies of the massive star formation region IRAS 19410+2336
- MALT90 molecular content on high-mass IR-dark clumps
- A Catalog of Molecular Clumps and Cores with Infall Signatures
- The physical and chemical structure of Sagittarius B2, VIII. Full molecular line survey of hot cores
- ATLASGAL-selected massive clumps in the inner Galaxy: VIII. Chemistry of photodissociation regions
- Chemical evolution of N2H+ in six massive star-forming regions
- A detailed study of the high-mass clump interacting with the bubble N10
- Massive Quiescent Cores in Orion: V. The Physical Structures on Sub-Jeans Scale and the Chemical Properties in Two Extremely Dense Cores
- Physical and chemical properties of Red MSX Sources in the southern sky: HII regions
- A statistical study towards the high-mass BGPS clumps with the MALT90 survey
- Spatial distribution of NH2D in massive star-forming regions
- Imaging Molecular Outflow in Massive Star-forming Regions with HNCO Lines
- Gravity as the main driver of non-thermal motions in massive star formation
- Spatial Variation of the Chemical Properties of Massive Star-forming Clumps
- Synthetic ngVLA line observations of a massive star-forming cloud
- What did the seahorse swallow? APEX 170 GHz observations of the chemical conditions in the Seahorse infrared dark cloud