Fragmentation, infall, and outflow around the showcase massive protostar NGC7538 IRS1 at 500 AU resolution
arXiv:1309.1018 · doi:10.1051/0004-6361/201321498
Abstract
Aims: Revealing the fragmentation, infall, and outflow processes in the immediate environment around massive young stellar objects is crucial for understanding the formation of the most massive stars. Methods: With this goal in mind we present the so far highest spatial-resolution thermal submm line and continuum observations toward the young high-mass protostar NGC7538 IRS1. Using the Plateau de Bure Interferometer in its most extended configuration at 843mum wavelength, we achieved a spatial resolution of 0.2"x0.17", corresponding to ~500AU at a distance of 2.7\,kpc. Results: For the first time, we have observed the fragmentation of the dense inner core of this region with at least three subsources within the inner 3000 AU. The outflow exhibits blue- and red-shifted emission on both sides of the central source indicating that the current orientation has to be close to the line-of-sight, which differs from other recent models. We observe rotational signatures in northeast-southwest direction; however, even on scales of 500 AU, we do not identify any Keplerian rotation signatures. This implies that during the early evolutionary stages any stable Keplerian inner disk has to be very small (<=500 AU). The high-energy line HCN(4-3)v2=1 (E_u/k=1050K) is detected over an extent of approximately 3000 AU. In addition to this, the detection of red-shifted absorption from this line toward the central dust continuum peak position allows us to estimate infall rates of ~1.8x10^(-3)Msun/yr on the smallest spatial scales. Although all that gas will not necessarily be accreted onto the central protostar, nevertheless, such inner core infall rates are among the best proxies of the actual accretion rates one can derive during the early embedded star formation phase. These data are consistent with collapse simulations and the observed high multiplicity of massive stars.
Accepted for Astronomy & Astrophysics, 8 pages, also available at http://www.mpia.de/homes/beuther/papers.html
References in corpus (10)
- Theory of Star Formation
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Limiting Accretion onto Massive Stars by Fragmentation-Induced Starvation
- Molecular Line Emission from Massive Protostellar Disks: Predictions for ALMA and the EVLA
- Dust and gas emission in the prototypical hot core G29.96-0.02 at sub-arcsecond resolution
- Outflows from the high-mass protostars NGC 7538 IRS1/2 observed with bispectrum speckle interferometry -- Signatures of flow precession
- Accretion disks around massive stars: Hydrodynamic structure, stability and dust sublimation
- NGC7538 IRS1 - an ionized jet powered by accretion
Cited by in corpus (33)
- The Origin of Massive Stars: The Inertial-Inflow Model
- Understanding star formation in molecular clouds II. Signatures of gravitational collapse of IRDCs
- Protostellar Outflows and Radiative Feedback from Massive Stars. II. Feedback, Star Formation Efficiency, and Outflow Broadening
- Chasing discs around O-type (proto)stars - ALMA evidence for an SiO disc and disc wind from G17.64+0.16
- Subarcsecond Imaging of the NGC 6334 I(N) Protocluster: Two Dozen Compact Sources and a Massive Disk Candidate
- The SOFIA Massive (SOMA) Star Formation Survey. I. Overview and First Results
- Hierarchical fragmentation and collapse signatures in a high-mass starless region
- The ALMA view of W33A: A Spiral Filament Feeding the Candidate Disc in MM1-Main
- JOYS: JWST Observations of Young protoStars: Outflows and accretion in the high-mass star-forming region IRAS23385+605
- Fragmentation and disk formation in high-mass star formation: The ALMA view of G351.77-0.54 at 0.06" resolution
- A multiple system of high-mass YSOs surrounded by disks in NGC7538 IRS1
- Evolution of fractality and rotation in embedded star clusters
- High-mass star formation at sub-50AU scales
- Slow ionized wind and rotating disklike system associated with the high-mass young stellar object G345.4938+01.4677
- Investigating fragmentation of gas structures in OB cluster-forming molecular clump G33.92+0.11 with 1000 AU resolution observations of ALMA
- 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
- Continuity of accretion from clumps to Class 0 high-mass protostars in SDC335
- 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
- HyGAL: Characterizing the Galactic ISM with observations of hydrides and other small molecules -- I. Survey description and a first look toward W3(OH), W3 IRS5 and NGC 7538 IRS1
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -XIII. Ongoing triggered star formation within clump-fed scenario found in the massive ( ) clump
- Protostellar Outflows at the EarliesT Stages (POETS). IV. Statistical properties of the 22 GHz H2O masers
- Interactions between Gas Dynamics and Magnetic Fields in the Massive Dense Cores of the DR21 Filament
- The disk-outflow system around the rare young O-type protostar W42-MME
- The methanol emission in the A line series as a tracer of specific physical conditions in high-mass star-forming regions
- Long-term Variability of HCO Masers in Star-forming Regions
- The Role of Thermal Instability in Accretion Outbursts in High-Mass Stars
- First detection of THz water maser in NGC7538-IRS1 with SOFIA and new 22 GHz e-MERLIN maps
- Redshifted methanol absorption tracing infall motions of high-mass star formation regions
- Episodic accretion in high-mass star formation: An analysis of thermal instability for axially symmetric disks
- Physical Properties and Real Nature of Massive Clumps in the Galaxy