The RMS Survey: Distribution and properties of a sample of massive young stars
arXiv:1008.3149 · doi:10.1111/j.1365-2966.2010.17514.x
Abstract
The Red MSX Source (RMS) survey has identified a large sample of massive young stellar objects (MYSOs) and ultra compact (UC) HII regions from a sample of ~2000 MSX and 2MASS colour selected sources. Using a recent catalogue of molecular clouds derived from the Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey (GRS), and by applying a Galactic scaleheight cut off of 120 pc, we solve the distance ambiguity for RMS sources located within 18\degr < |l| > 54\degr. These two steps yield kinematic distances to 291 sources out of a possible 326 located within the GRS longitude range. Combining distances and integrated fluxes derived from spectral energy distributions, we estimate luminosities to these sources and find that > 90% are indicative of the presence of a massive star. We find the completeness limit of our sample is ~10^4 Lsun, which corresponds to a zero age main sequence (ZAMS) star with a mass of ~12 Msun. Selecting only these sources, we construct a complete sample of 196 sources. Comparing the properties of the sample of young massive stars with the general population, we find the RMS-clouds are generally larger, more massive, and more turbulent. We examine the distribution of this sub-sample with respect to the location of the spiral arms and the Galactic bar and find them to be spatially correlated. We identify three significant peaks in the source surface density at Galactocentric radii of approximately 4, 6 and 8 kpc, which correspond to the proposed positions of the Scutum, Sagittarius and Perseus spiral arms, respectively. Fitting a scale height to the data we obtain an average value of ~29+-0.5 pc, which agrees well with other reported values in the literature, however, we note a dependence of the scale height on galactocentric radius with it increases from 30 pc to 45 pc between 2.5 and 8.5 kpc.
Accepted for publication by MNRAS. Paper consists of 15 pages including 12 figures and four tables. Full versions of Tables 2 and 3 will only be available online. The resolution of Figure 9 has been reduced - a full resolution version of the paper can be download from here: http://www.ast.leeds.ac.uk/cgi-bin/RMS/RMS_PUBLICATIONS.cgi
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Cited by in corpus (44)
- The Red MSX Source Survey: the Massive Young Stellar Population of our Galaxy
- The ATLASGAL survey: a catalog of dust condensations in the Galactic plane
- The RMS Survey: Ammonia and water maser analysis of massive star forming regions
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- The Co-ordinated Radio and Infrared Survey for High Mass Star Formation (The CORNISH Survey) - I. Survey Design
- The Co-ordinated Radio and Infrared Survey for High-Mass Star Formation - II. Source Catalogue
- The RMS Survey: Galactic distribution of massive star formation
- ATLASGAL --- Environments of 6.7\,GHz methanol masers
- ATLASGAL --- properties of compact HII regions and their natal clumps
- The Bolocam Galactic Plane Survey. VII. Characterizing the Properties of Massive Star-Forming Regions
- The Luminosity Functions and Timescales of MYSOs and Compact HII regions
- The Milky Way Project: A statistical study of massive star formation associated with infrared bubbles
- ATLASGAL - Kinematic distances and the dense gas mass distribution of the inner Galaxy
- The RMS Survey: Near-IR Spectroscopy of Massive Young Stellar Objects
- ATLASGAL -- Evolutionary trends in high-mass star formation
- The H2O southern Galactic Plane Survey(HOPS): NH3 (1,1) and (2,2) catalogues
- CO bandhead emission of massive young stellar objects: determining disc properties
- Star formation towards the Scutum tangent region and the effects of Galactic environment
- The RMS Survey: Resolving kinematic distance ambiguities towards a sample of compact HII regions using HI absorption
- Stellar clusters in the inner Galaxy and their correlation with cold dust emission
- Major structures of the inner Galaxy delineated by 6.7-GHz methanol masers
- The Effect of Spiral Arms on Star Formation in the Galaxy
- Galactic structure based on the ATLASGAL 870mum survey
- The statistics of triggered star formation: an overdensity of massive YSOs around Spitzer bubbles
- Methanol Maser Associated Outflows: Detection statistics and properties
- The Coordinated Radio and Infrared Survey for High-Mass Star Formation III. A catalogue of northern ultra-compact H II regions
- The Lesser Role of Shear in Star Formation: Insight from the Galactic Ring Survey
- High-mass star-forming cloud G0.38+0.04 in the Galactic Center Dust Ridge contains H2CO and SiO masers
- YSO jets in the Galactic Plane from UWISH2: II - Outflow Luminosity and Length distributions in Serpens and Aquila
- Massive pre-main sequence stars in M17
- A pilot survey of the binarity of Massive Young Stellar Objects with band adaptive optics
- Medium resolution near-infrared spectroscopy of Massive Young Stellar Objects
- Absolutely calibrated radio polarimetry of the inner Galaxy at 2.3 GHz and 4.8 GHz
- Molecular Clouds in Supershells: A Case Study of Three Objects in the Walls of GSH 287+04-17 and GSH 277+00+36
- An analysis of star formation with Herschel in the Hi-GAL Survey. II. The tips of the Galactic bar
- First firm spectral classification of an early-B pre-main-sequence star: B275 in M17
- Probing the envelopes of massive young stellar objects with diffraction limited mid-infrared imaging
- The mid-infrared environments of 6.7 GHz Methanol Masers from the Methanol Multi-Beam Survey
- About the nature of Mercer14
- Ultra-compact Embedded Clusters in the Galactic Plane
- Milliarcsecond structure of water maser emission in two young high-mass stellar objects associated with methanol masers
- A CO observation of the galactic methanol masers
- Near-Contemporaneous Optical Spectroscopic and Infrared Photometric Observations of Candidate Herbig Ae/Be Stars in the Magellanic Clouds
- Search for High-Mass Protostellar Objects in Cold IRAS Sources