A differentially rotating disc in a high-mass protostellar system
arXiv:0904.3722 · doi:10.1051/0004-6361/200811553
Abstract
A strong signature of a circumstellar disc around a high-mass protostar has been inferred from high resolution methanol maser observations in NGC7538-IRS1 N. This interpretation has however been challenged with a bipolar outflow proposed as an alternative explanation. We compare the two proposed scenarios for best consistency with the observations. Using a newly developed formalism we model the optical depth of the maser emission at each observed point in the map and LOS velocity for the two scenarios. We find that if the emission is symmetric around a central peak in both space and LOS velocity then it has to arise from an edge-on disc in sufficiently fast differential rotation. Disc models successfully fit ~100 independent measurement points in position-velocity space with 4 free parameters to an overall accuracy of 3-4%. Solutions for Keplerian rotation require a central mass of at least 4 solar masses. Close to best-fitting models are obtained if Keplerian motion is assumed around a central mass equaling ~30 solar masses as inferred from other observations. In contrast we find that classical bipolar outflow models cannot fit the data, although could be applicable in other sources. Our results strongly favour the differentially rotating disc hypothesis to describe the main feature of the 12.2 (and 6.7) GHz methanol maser emission in NGC7538 IRS1 N. Furthermore, for Keplerian rotation around a ~30 solar masses protostar we predict the position and velocity at which tangentially amplified masers should be detected in high dynamic range observations. [abridged]
13 pages, 11 figures, accepted for publication in A&A
References in corpus (4)
Cited by in corpus (15)
- High-Velocity Bipolar Molecular Emission from an AGN Torus
- Methanol and water masers in IRAS 20126+4104: The distance, the disk, and the jet
- Gas Distribution, Kinematics, and Excitation Structure in the Disks around the Classical Be Stars Beta Canis Minoris and Zeta Tauri
- Methanol Maser Associated Outflows: Detection statistics and properties
- Fragmentation, infall, and outflow around the showcase massive protostar NGC7538 IRS1 at 500 AU resolution
- Chemistry of massive young stellar objects with a disk-like structure
- The Arecibo Methanol Maser Galactic Plane Survey-IV: Accurate Astrometry and Source Morphologies
- A multiwavelength study of embedded clusters in W5-east, NGC7538, S235, S252 and S254-S258
- The high-mass disk candidates NGC7538IRS1 and NGC7538S
- The stellar contents and star formation in the NGC 7538 region
- Inferring the evolutionary stages of the internal structures of NGC 7538 S and IRS1 from chemistry
- Revising the kinematics of 12GHz CH3OH masers in W3(OH)
- NGC7538 IRS1 -- an O star driving an ionized jet and giant N-S outflow
- The Rare 23.1-GHz Methanol Masers in NGC 7538 IRS 1
- The methanol emission in the A line series as a tracer of specific physical conditions in high-mass star-forming regions