Early stages of cluster formation: fragmentation of massive dense cores down to ~1000 AU
arXiv:1211.2666 · doi:10.1088/0004-637X/762/2/120
Abstract
In order to study the fragmentation of massive dense cores, which constitute the cluster cradles, we observed with the PdBI in the most extended configuration the continuum at 1.3 mm and the CO(2-1) emission of four massive cores. We detect dust condensations down to ~0.3 Msun and separate millimeter sources down to 0.4" or ~1000 AU, comparable to the sensitivities and separations reached in optical/infrared studies of clusters. The CO(2-1) high angular resolution images reveal high-velocity knots usually aligned with previously known outflow directions. This, in combination with additional cores from the literature observed at similar mass sensitivity and spatial resolution, allowed us to build a sample of 18 protoclusters with luminosities spanning 3 orders of magnitude. Among the 18 regions, ~30% show no signs of fragmentation, while 50% split up into ~4 millimeter sources. We compiled a list of properties for the 18 massive dense cores, such as bolometric luminosity, total mass, and mean density, and found no correlation of any of these parameters with the fragmentation level. In order to investigate the combined effects of magnetic field, radiative feedback and turbulence in the fragmentation process, we compared our observations to radiation magneto-hydrodynamic simulations, and found that the low-fragmented regions are well reproduced in the magnetized core case, while the highly-fragmented regions are consistent with cores where turbulence dominates over the magnetic field. Overall, our study suggests that the fragmentation in massive dense cores could be determined by the initial magnetic field/turbulence balance in each particular core.
accepted for publication in ApJ
References in corpus (19)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- Magnetic Fields in the Formation of Sun-Like Stars
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
- Do O-stars form in isolation?
- Spitzer IRAC and MIPS Imaging of Clusters and Outflows in 9 High-mass Star Forming Regions
- Evolution of Magnetic Fields in High Mass Star Formation: Linking field geometry and collapse for the W51 e2/e8 cores
- Multiple Jets from the High-Mass (Proto)stellar Cluster AFGL5142
- Interstellar matter and star formation in W5-E - A Herschel view
- Probing the formation of intermediate- to high-mass stars in protoclusters II. Comparison between millimeter interferometric observations of NGC 2264-C and SPH simulations of a collapsing clump
- Modeling the magnetic field in the protostellar source NGC 1333 IRAS 4A
- Chemical segregation toward massive hot cores: The AFGL2591 star forming region
- Multi-line (sub)millimetre observations of the high-mass proto cluster IRAS 05358+3543
- Millimeter interferometry of W3 IRS5: A Trapezium in the making
- The IC1396N proto-cluster at a scale of 250 AU
- A dense micro-cluster of Class 0 protostars in NGC 2264 D-MM1
- Protostellar clusters in intermediate-mass (IM) star forming regions
- Chandra and Spitzer Imaging of the Infrared Cluster in NGC 2071
- Diverse protostellar evolutionary states in the young cluster AFGL961
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