The Galactic Census of High- and Medium-mass Protostars. I. Catalogues and First Results from Mopra HCO+ Maps
arXiv:1103.2350 · doi:10.1088/0067-0049/196/1/12
Abstract
The Census of High- and Medium-mass Protostars (CHaMP) is the first large-scale, unbiased, uniform mapping survey at sub-parsec scale resolution of 90 GHz line emission from massive molecular clumps in the Milky Way. We present the first Mopra (ATNF) maps of the CHaMP survey region (300°>l>280°) in the HCO+ J=1-0 line, which is usually thought to trace gas at densities up to 10^11 m-3. In this paper we introduce the survey and its strategy, describe the observational and data reduction procedures, and give a complete catalogue of moment maps of the HCO+ J=1-0 emission from the ensemble of 301 massive molecular clumps. From these maps we also derive the physical parameters of the clumps, using standard molecular spectral-line analysis techniques. This analysis yields the following range of properties: integrated line intensity 1-30 K km s-1, peak line brightness 1-7 K, linewidth 1-10 km s-1, integrated line luminosity 0.5-200 K km s-1 pc^2, FWHM size 0.2-2.5 pc, mean projected axial ratio 2, optical depth 0.08-2, total surface density 30-3000 M{\sun} pc-2, number density 0.2-30 x 10^9 m-3, mass 15-8000 M{\sun}, virial parameter 1-55, and total gas pressure 0.3-700 pPa. We find that the CHaMP clumps do not obey a Larson-type size-linewidth relation. Among the clumps, there exists a large population of subthermally excited, weakly-emitting (but easily detectable) dense molecular clumps, confirming the prediction of Narayanan et al. (2008). These weakly-emitting clumps comprise 95% of all massive clumps by number, and 87% of the molecular mass, in this portion of the Galaxy; their properties are distinct from the brighter massive star-forming regions that are more typically studied. If the clumps evolve by slow contraction, the 95% of fainter clumps may represent a long-lived stage of pressure-confined, gravitationally stable massive clump evolution, while the CHaMP ... (abridged)
Submitted to ApJ; edited to referee's comments. 98 pages, 81 figures. For more information, see http://www.astro.ufl.edu/champ
References in corpus (17)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Complex Chemistry in Star-Forming Regions: An Expanded Gas-Grain Warm-up Chemical Model
- A Spitzer Survey of Young Stellar Clusters within One Kiloparsec of the Sun: Cluster Core Extraction and Basic Structural Analysis
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- Equilibrium Star Cluster Formation
- On the Rapid Collapse and Evolution of Molecular Clouds
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- Dynamically Driven Evolution of the Interstellar Medium in M51
- A Multi-color Optical Survey of the Orion Nebula Cluster. II. the H-R diagram
- The secrets of the nearest starburst cluster: II. The present-day mass function in NGC 3603
- Molecular Star Formation Rate Indicators in Galaxies
- Multi-wavelength observations of Southern Hot Molecular Cores traced by methanol masers - I. Ammonia and 24 GHz Continuum Data
- Large Area Mapping at 850 Microns. V. Analysis of the Clump Distribution in the Orion A South Molecular Cloud
- Progressive star formation in the young galactic super star cluster NGC 3603
- The Ionization of Accretion Flows in High Mass Star Formation: W51e2
- Chemical differentiation in regions of high-mass star formation I. CS, dust and N2H^+ in southern sources
Cited by in corpus (48)
- The Critical Density and the Effective Excitation Density of Commonly Observed Molecular Dense Gas Tracers
- Variations in the Galactic star formation rate and density thresholds for star formation
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- 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 ()
- MALT90: The Millimetre Astronomy Legacy Team 90 GHz Survey
- Chemical evolution in the early phases of massive star formation. I
- SEDIGISM: Structure, excitation, and dynamics of the inner Galactic interstellar medium
- The Three-mm Ultimate Mopra Milky Way Survey. I. Survey Overview, Initial Data Releases, and First Results
- The SEDIGISM survey: first data release and overview of the Galactic structure
- The Skeleton of the Milky Way
- The Hi-GAL catalogue of dusty filamentary structures in the Galactic Plane
- The Star Formation Rate of the Milky Way as seen by Herschel
- CO-dark molecular gas at high redshift: very large H content and high pressure in a low metallicity damped Lyman-alpha system
- The SEDIGISM survey: Molecular clouds in the inner Galaxy
- The Bolocam Galactic Plane Survey. X. A Complete Spectroscopic Catalog of Dense Molecular Gas Observed toward 1.1 mm Dust Continuum Sources with 7.5 <= l <= 194 degrees
- Chemical evolution in the early phases of massive star formation II: Deuteration
- The Self-gravitating Gas Fraction and The Critical Density for Star Formation
- The Core Mass Function in the Massive Protocluster G286.21+0.17 revealed by ALMA
- The Life and Death of Dense Molecular Clumps in the Large Magellanic Cloud
- Star Formation Occurs in Dense Gas, but What Does "Dense" Mean?
- Energy budget of forming clumps in numerical simulations of collapsing clouds
- The Galactic Census of High- and Medium-mass Protostars. II. Luminosities and Evolutionary States of a Complete Sample of Dense Gas Clumps
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies. I. The unmagnetized and zero-feedback limit
- The Green Bank Ammonia Survey: A Virial Analysis of Gould Belt Clouds in Data Release 1
- Star Formation Induced by Cloud-Cloud Collisions and Galactic Giant Molecular Cloud Evolution
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies III. Structure and Dynamics of Filaments and Clumps in Giant Molecular Clouds
- The Galactic Census of High- and Medium-mass Protostars. IV. Molecular Clump Radiative Transfer, Mass Distributions, Kinematics, and Dynamical Evolution
- Surveying the Giant HII Regions of the Milky Way with SOFIA: I. W51A
- From Gas to Stars in Energetic Environments: Dense Gas Clumps in the 30 Doradus Region Within the Large Magellanic Cloud
- Surveying the Giant HII Regions of the Milky Way with SOFIA: II. M17
- Millimetre-Wave and Near-Infrared Signposts of Massive Molecular Clump Evolution and Star Cluster Formation
- The Galactic Census of High- and Medium-mass Protostars. III CO Maps and Physical Properties of Dense Clump Envelopes and their Embedding GMCs
- Ionized gas at the edge of the Central Molecular Zone
- On the Diagnostic Power of FIR/Sub-mm SED Fitting in Massive Galactic Molecular Clumps
- The stellar content of the infalling molecular clump G286.21+0.17
- ALMA Observations of HCO+ and HCN Emission in a massive star forming region N55 of the Large Magellanic Cloud
- Gas Kinematics of the Massive Protocluster G286.21+0.17 Revealed by ALMA
- Dense gas and star formation in the Outer Milky Way
- Molecular Clouds: Internal Properties, Turbulence, Star Formation and Feedback
- Census of High- and Medium-mass Protostars V. CO Abundance and the Galactic Factor
- 870 micron continuum observations of the bubble-shaped nebula Gum 31
- Thermal Pressure in Diffuse H2 Gas Measured by Herschel [C II] Emission and FUSE UV H2 Absorption
- HCN hyperfine ratio analysis of massive molecular clumps
- Gemini, SOFIA, and ATCA Reveal Very Young, Massive Protostars in the Collapsing Molecular Cloud BYF 73
- Molecular gas associated with IRAS 10361-5830
- Multifrequency study of HH 137 and HH 138: Discovering new knots and molecular outflows with Gemini and APEX
- ALMA Datacubes and Continuum Maps of the Irradiated Western Wall in Carina
- GMC Origins and Turbulent Motions in Spiral and Dwarf Galaxies