The high-mass disk candidates NGC7538IRS1 and NGC7538S
arXiv:1205.5459 · doi:10.1051/0004-6361/201219128
Abstract
Context: The nature of embedded accretion disks around forming high-mass stars is one of the missing puzzle pieces for a general understanding of the formation of the most massive and luminous stars. Methods: Using the Plateau de Bure Interferometer at 1.36mm wavelengths in its most extended configuration we probe the dust and gas emission at ~0.3",corresponding to linear resolution elements of ~800AU. Results: NGC7538IRS1 remains a single compact and massive gas core with extraordinarily high column densities, corresponding to visual extinctions on the order of 10^5mag, and average densities within the central 2000AU of ~2.1x10^9cm^-3 that have not been measured before. We identify a velocity gradient across in northeast-southwest direction that is consistent with the mid-infrared emission, but we do not find a gradient that corresponds to the proposed CH3OH maser disk. The spectral line data toward NGC7538IRS1 reveal strong blue- and red-shifted absorption toward the mm continuum peak position. The red-shifted absorption allows us to estimate high infall rates on the order of 10^-2 Msun/yr. Although we cannot prove that the gas will be accreted in the end, the data are consistent with ongoing star formation activity in a scaled-up low-mass star formation scenario. Compared to that, NGC7538S fragments in a hierarchical fashion into several sub-sources. While the kinematics of the main mm peak are dominated by the accompanying jet, we find rotational signatures from a secondary peak. Furthermore, strong spectral line differences exist between the sub-sources which is indicative of different evolutionary stages within the same large-scale gas clump.
15 pages, 12 figures, accepted for A&A
References in corpus (13)
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Fragmentation of Massive Protostellar Disks
- A hot compact dust disk around a massive young stellar object
- The Early Evolution of Massive Stars: Radio Recombination Line Spectra
- Dust and gas emission in the prototypical hot core G29.96-0.02 at sub-arcsecond resolution
- Interferometric multi-wavelength (sub)millimeter continuum study of the young high-mass protocluster IRAS05358+3543
- Outflows from the high-mass protostars NGC 7538 IRS1/2 observed with bispectrum speckle interferometry -- Signatures of flow precession
- Millimeter interferometry of W3 IRS5: A Trapezium in the making
- NGC7538 IRS1 - an ionized jet powered by accretion
- Kinematics of a hot massive accretion disk candidate
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- Fragmentation and dynamical collapse of the starless high-mass star-forming region IRDC18310-4
- Forming an O Star via Disk Accretion?
- The SEDIGISM survey: a search for molecular outflows
- Shaping a high-mass star-forming cluster through stellar feedback. The case of the NGC 7538 IRS 1-3 complex
- FEEDBACK from the NGC7538 HII region
- Kinematics and stability of high-mass protostellar disk candidates at sub-arcsecond resolution -- Insights from the IRAM NOEMA large program CORE
- Hot Ammonia around O-type Young Stars. I. JVLA imaging of Ammonia (6,6) to (14,14) in NGC7538 IRS1
- Multiplicity and disks within the high-mass core NGC7538IRS1: Resolving cm line and continuum emission at ~0.06"x0.05" resolution
- A Comparative Astrochemical Study Of The High-Mass Protostellar Objects NGC 7538 IRS 9 and IRS 1
- NGC 7538 : Multiwavelength Study of Stellar Cluster Regions associated with IRS 1-3 and IRS 9 sources
- Fragmentation, rotation and outflows in the high-mass star-forming region IRAS 23033+5951. A case study of the IRAM NOEMA large program CORE
- Inferring the evolutionary stages of the internal structures of NGC 7538 S and IRS1 from chemistry
- NGC7538 IRS1 -- an O star driving an ionized jet and giant N-S outflow
- Sub-arcsec Observations of NGC 7538 IRS 1: Continuum Distribution and Dynamics of Molecular Gas
- Infall in massive clumps harboring bright infrared sources
- Deuterated methanol toward NGC 7538-IRS1
- NGC 7538 IRS1: Interaction of a polarized dust spiral and a molecular outflow
- New Maser Emission from Nonmetastable Ammonia in NGC 7538. III. Detection of the (10,6) Transition and a Velocity Gradient
- K-band High-Resolution Spectroscopy of Embedded Massive Protostars
- Physical Properties and Real Nature of Massive Clumps in the Galaxy