A SCUBA imaging survey of ultracompact HII regions: The environments of massive star formation
arXiv:astro-ph/0604208 · doi:10.1051/0004-6361:20054383
Abstract
We present a SCUBA submillimetre (450 & 850 micron) survey of the environment of 105 IRAS point sources, selected from the Wood & Churchwell (1989a) and Kurtz, Churchwell & Wood (1994) radio ultracompact (UC) HII region surveys. We detected a total of 155 sub-mm clumps associated with the IRAS point sources and identified three distinct types of object: ultracompact cm-wave sources that are not associated with any sub-mm emission (sub-mm quiet objects), sub-mm clumps that are associated with ultracompact cm-wave sources (radio-loud clumps); and sub-mm clumps that are not associated with any known ultracompact cm-wave sources (radio-quiet clumps). 90% of the sample of IRAS point sources were found to be associated with strong sub-mm emission. We consider the sub-mm colours, morphologies and distance-scaled fluxes of the sample of sub-mm clumps and show that the sub-mm quiet objects are unlikely to represent embedded UC HII regions unless they are located at large heliocentric distances. Many of the 2.5 arcmin SCUBA fields contain more than one sub-mm clump, with an average number of companions (the companion clump fraction) of 0.90. The clumps are more strongly clustered than other candidate HMPOs and the mean clump surface density exhibits a broken power-law distribution with a break at 3 pc. We demonstrate that the sub-mm and cm-wave fluxes of the majority of radio-loud clumps are in excellent agreement with the standard model of ultracompact HII regions. We speculate on the nature of the radio-quiet sub-mm clumps and, whilst we do not yet have sufficient data to conclude that they are in a pre-UC HII region phase, we argue that their characteristics are suggestive of such a stage.
Accepted by A&A. Note that due to size constraints the Online Supplement cannot be reproduced here and that several of the figures are low-resolution versions. A complete preprint (in PDF format) with full resolution images is available at http://star-www.herts.ac.uk/~mat/uchii_environs.pdf
Cited by in corpus (35)
- A Class I and Class II Methanol Maser Survey of Extended Green Objects (EGOs) from the GLIMPSE Survey
- ATLASGAL --- towards a complete sample of massive star forming clumps
- The RMS Survey: Radio observations of candidate massive YSOs in the southern hemisphere
- ATLASGAL -- Evolutionary trends in high-mass star formation
- Probing the initial conditions of High Mass Star formation -- I. Deuteration and depletion in high mass pre/protocluster clumps
- Trigonometric Parallaxes of Star Forming Regions in the Scutum Spiral Arm
- Dust and gas emission in the prototypical hot core G29.96-0.02 at sub-arcsecond resolution
- On the Relationship of UC H II Regions and Class II Methanol Masers: I. Source Catalogs
- Resolved 24.5 micron emission from massive young stellar objects
- The almost ubiquitous association of 6.7 GHz methanol masers with dust
- Chemical Diversity in High-Mass Star Formation
- GLOSTAR -- Radio Source Catalog I: and
- Refining the associations of the Fermi Large Area Telescope Source Catalogs
- A population of hypercompact HII regions identified from young HII regions
- A survey of SiO 5-4 emission towards outflows from massive young stellar objects
- The Balloon-borne Large Aperture Submillimeter Telescope (BLAST) 2005: Calibration and Targeted Sources
- ALMA reveals the magnetic field evolution in the high-mass star forming complex G9.62+0.19
- Interaction Between Supernova Remnant G22.7-0.2 And The Ambient Molecular Clouds
- Spectral energy distribution modelling of Southern candidate massive protostars using the Bayesian inference method
- A global view on star formation: The GLOSTAR Galactic plane survey IV. Radio continuum detections of young stellar objects in the Galactic Centre region
- Physical and chemical complexity in high-mass star-forming regions with ALMA. I. Overview and evolutionary trends of physical properties
- Observations of Cyanopolyynes toward Four High-Mass Star-Forming Regions Containing Hot Cores
- A global view on star formation: The GLOSTAR Galactic plane survey. IX. Radio Source Catalog III: 2<l<28, 36<l<40, 56<l<60 and |b|<1, VLA B-configuration
- The inflow signature toward different evolutionary phases of massive star formation
- EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions IV. Magnetic field strength limits and structure for 7 additional sources
- Herschel PACS and SPIRE spectroscopy of the Photodissociation Regions associated with S 106 and IRAS 23133+6050
- Beyond the Solar Circle Trends in Massive Star Formation Between the Inner and Outer Galaxy
- A global view on star formation: The GLOSTAR Galactic plane survey X. Galactic HII region catalog using radio recombination lines
- Our Knowledge of High-Mass Star Formation at the Dawn of Herschel
- EVN observations of 6.7 GHz methanol maser polarization in massive star-forming regions. V. Completion of the flux-limited sample
- Microstructure and kinematics of H2O masers in the massive star forming region IRAS 06061+2151
- Analysis of Low Excitation HDO Transitions Toward the High-Mass Star-forming Regions G34.26+0.15, W51e/e, and W49N
- [Fe II] 1.64 um Imaging Observations of the Outflow Features around Ultracompact H II Regions in the 1st Galactic Quadrant
- A Possible Chemical Clock in High-mass Star-forming Regions: N(HC3N)/N(N2H+)?
- The Curious Case of the "Heartworm" Nebula