A large, massive, rotating disk around an isolated young stellar object
arXiv:1005.1652 · doi:10.1088/0004-637X/717/2/693
Abstract
We present multi-wavelengths observations and a radiative transfer model of a newly discovered massive circumstellar disk of gas and dust which is one of the largest disks known today. Seen almost edge-on, the disk is resolved in high-resolution near-infrared (NIR) images and appears as a dark lane of high opacity intersecting a bipolar reflection nebula. Based on molecular line observations we estimate the distance to the object to be 3.5 kpc. This leads to a size for the dark lane of ~10500 AU but due to shadowing effects the true disk size could be smaller. In Spitzer/IRAC 3.6 micron images the elongated shape of the bipolar reflection nebula is still preserved and the bulk of the flux seems to come from disk regions that can be detected due to the slight inclination of the disk. At longer IRAC wavelengths, the flux is mainly coming from the central regions penetrating directly through the dust lane. Interferometric observations of the dust continuum emission at millimeter wavelengths with the SMA confirm this finding as the peak of the unresolved mm-emission coincides perfectly with the peak of the Spitzer/IRAC 5.8 micron flux and the center of the dark lane seen in the NIR images. Simultaneously acquired CO data reveal a molecular outflow along the northern part of the reflection nebula which seems to be the outflow cavity. An elongated gaseous disk component is also detected and shows signs of rotation. The emission is perpendicular to the molecular outflow and thus parallel to but even more extended than the dark lane in the NIR images. Based on the dust continuum and the CO observations we estimate a disk mass of up to a few solar masses depending on the underlying assumptions. Whether the disk-like structure is an actual accretion disk or rather a larger-scale flattened envelope or pseudodisk is difficult to discriminate with the current dataset (abridged).
Accepted for publication in ApJ, 29 pages preprint style incl. 10 Figures
References in corpus (21)
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Star formation through gravitational collapse and competitive accretion
- The Simultaneous Formation of Massive Stars and Stellar Clusters
- Ethynyl (C2H) in massive star formation: Tracing the initial conditions?
- Circumstellar disks around Herbig Be stars
- The circumstellar disk, envelope, and bi-polar outflow of the Massive Young Stellar Object W33A
- Chemistry in Disks. III. -- Photochemistry and X-ray driven chemistry probed by the ethynyl radical (CCH) in DM Tau, LkCa 15, and MWC 480
- Search for very low-mass brown dwarfs and free-floating planetary-mass objects in Taurus
- Dense and warm molecular gas in the envelopes and outflows of southern low-mass protostars
- Mid-infrared interferometry of massive young stellar objects. I. VLTI and Subaru observations of the enigmatic object M8E-IR
- Hot high-mass accretion disk candidates
- Kinematics of a hot massive accretion disk candidate
- Chemistry in Disks. II. -- Poor molecular content of the AB Aur disk
- Direct detection of a flared disk around a young massive star HD200775 and its 10 to 1000AU scale properties
- The Complex Mid-Infrared Structure at the Heart of IRAS 20126+4104
- Evolution of massive protostars: the IRAS 18151-1208 region
- Disks around massive young stellar objects: are they common?
- The Morphology of M17-UC1 - A Disk Candidate Surrounding a Hypercompact HII Region
- Gomez's Hamburger (IRAS 18059-3211): A pre main-sequence A-type star
- Deconstructing the High-Mass Star-Forming Region IRAS 23033+5951
- Probing the centre of the large circumstellar disc in M17
Cited by in corpus (10)
- On the simultaneous evolution of massive protostars and their host cores
- On the stability of radiation-pressure-dominated cavities
- Herschel survey and modelling of externally-illuminated photoevaporating protoplanetary disks
- The Intermediate-mass Young Stellar Object 08576nr292: Discovery of a disk-jet system
- Mass and motion of globulettes in the Rosette Nebula
- Detection of a large massive circumstellar disk around a high-mass young stellar object in the Carina Nebula
- Very Large Telescope observations of Gomez's Hamburger: Insights into a young protoplanet candidate
- The Spatial-Kinematic Structure of the Region of Massive Star Formation S255N on Various Scales
- Relaxation of protostellar accretion shocks using the smoothed particle hydrodynamics
- Photoevaporation of protoplanetary disks by Far-UV photons arising from neighbouring massive stars: observation of proplyds and modelling