Mid-infrared interferometry of the massive young stellar object NGC 2264 IRS 1
arXiv:1107.0928 · doi:10.1051/0004-6361/201116699
Abstract
The optically invisible infrared-source NGC 2264 IRS 1 is thought to be a massive young stellar object (~10 Msun). Although strong infrared excess clearly shows that the central object is surrounded by large amounts of circumstellar material, no information about the spatial distribution of this circumstellar material has been available until now. We used the ESO Very Large Telescope Interferometer to perform long-baseline interferometric observations of NGC 2264 IRS 1 in the mid-infrared regime. Our observations resolve the circumstellar material around NGC 2264 IRS 1, provide the first direct measurement of the angular size of the mid-infrared emission, and yield direct constraints on the spatial distribution of the dust. We use different approaches (a geometrical model, a temperature-gradient model, and radiative transfer models) to jointly model the observed interferometric visibilities and the spectral energy distribution. The derived visibility values between ~0.02 and ~0.3 show that the mid-infrared emission is clearly resolved. The characteristic size of the MIR-emission region is ~30-60 AU; this value is typical for other YSOs with similar or somewhat lower luminosities. A comparison of the sizes for the two position angles shows a significant elongation of the dust distribution. Simple spherical envelope models are therefore inconsistent with the data. The radiative transfer modeling of our data suggests that we observe a geometrically thin and optically thick circumstellar disk with a mass of about 0.1 Msun. Our modeling indicates that NGC 2264 IRS 1 is surrounded by a flat circumstellar disk that has properties similar to disks typically found around lower-mass young stellar objects. This result supports the assumption that massive young stellar objects form via accretion from circumstellar disks.
11 pages, accepted for publication in A&A
References in corpus (11)
- Star formation through gravitational collapse and competitive accretion
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- A hot compact dust disk around a massive young stellar object
- Circumstellar disks around Herbig Be stars
- Detection of an inner gaseous component in a Herbig Be star accretion disk: Near- and mid-infrared spectro-interferometry and radiative transfer modeling of MWC 147
- Mid-infrared size survey of Young Stellar Objects: Description of Keck segment-tilting experiment and basic results
- Resolved 24.5 micron emission from massive young stellar objects
- VLTI/MIDI 10 micron interferometry of the forming massive star W33A
- MWC 297: a young high-mass star rotating at critical velocity
- Mid-infrared interferometry of the massive young stellar object NGC3603 - IRS 9A
- Mid - infrared interferometry of massive young stellar objects II Evidence for a circumstellar disk surrounding the Kleinmann - Wright object
Cited by in corpus (16)
- Accretion disks in luminous young stellar objects
- Unifying low and high mass star formation through density amplified hubs of filaments
- The structure of disks around intermediate-mass young stars from mid-infrared interferometry. Evidence for a population of group II disks with gaps
- The VLTI/MIDI survey of massive young stellar objects - Sounding the inner regions around intermediate- and high-mass young stars using mid-infrared interferometry
- The Massive Star-Forming Regions Omnibus X-Ray Catalog, Third Installment
- Submillimeter Array Observations of NGC 2264-C: Molecular Outflows and Driving Sources
- Blinded by the light: on the relationship between CO first overtone emission and mass accretion rate in massive young stellar objects
- Probing the envelopes of massive young stellar objects with diffraction limited mid-infrared imaging
- The first interferometric survey in the K-band of massive YSOs. On the hot dust, ionised gas, and binarity at au scales
- Unveiling the traits of massive young stellar objects through a multi-scale survey
- On the massive young stellar object AFGL4176: High-spatial-resolution multi-wavelength observations and modeling
- Unveiling the near-infrared structure of the massive-young stellar object NGC 3603 IRS 9A with sparse aperture masking and spectroastrometry
- Tying the geometrical traits of massive young stellar objects and their discs to a potential evolutionary sequence using infrared observations
- The onset of stellar multiplicity in massive star formation: A search for low-mass companions of massive young stellar objects with -band adaptive optics imaging
- Carbonates and ices in the galaxy-absorber towards PKS 1830-211 and within star-forming regions of the Milky Way
- The spectral energy distribution of protoplanetary diss around Massive Young Stellar Objects