Probing discs around massive young stellar objects with CO first overtone emission
arXiv:1007.3289 · doi:10.1111/j.1365-2966.2010.17250.x
Abstract
We present high resolution (R~50,000) spectroastrometry over the CO 1st overtone bandhead of a sample of seven intermediate/massive young stellar objects. These are primarily drawn from the red MSX source (RMS) survey, a systematic search for young massive stars which has returned a large, well selected sample of such objects. The mean luminosity of the sample is approximately 5 times 10^4 L_\odot, indicating the objects typically have a mass of ~15 solar masses. We fit the observed bandhead profiles with a model of a circumstellar disc, and find good agreement between the models and observations for all but one object. We compare the high angular precision (0.2-0.8 mas) spectroastrometric data to the spatial distribution of the emitting material in the best-fitting models. No spatial signatures of discs are detected, which is entirely consistent with the properties of the best-fitting models. Therefore, the observations suggest that the CO bandhead emission of massive young stellar objects originates in small-scale disks, in agreement with previous work. This provides further evidence that massive stars form via disc accretion, as suggested by recent simulations.
Accepted for publication in MNRAS
References in corpus (9)
- Spectro-astrometric imaging of molecular gas within protoplanetary disk gaps
- The RMS Survey: Radio observations of candidate massive YSOs in the southern hemisphere
- VLT K-band spectroscopy of massive young stellar objects in (ultra-)compact HII regions
- The RMS Survey: Mid-Infrared Observations of Candidate Massive YSOs in the Southern Hemisphere
- The RMS Survey: CO observations of candidate massive YSOs in the northern Galactic plane
- Accretion disks around massive stars: Hydrodynamic structure, stability and dust sublimation
- VLTI/MIDI 10 micron interferometry of the forming massive star W33A
- Sub-milliarcsecond precision spectro-astrometry of Be stars
- Probing the close environment of massive young stars with spectro-astrometry
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