Is protostellar heating sufficient to halt fragmentation? A case study of the massive protocluster G8.68-0.37
arXiv:1011.1442 · doi:10.1088/0004-637X/726/2/97
Abstract
If star formation proceeds by thermal fragmentation and the subsequent gravitational collapse of the individual fragments, how is it possible to form fragments massive enough for O and B stars in a typical star-forming molecular cloud where the Jeans mass is about 1Msun at the typical densities (10^4 cm^-3) and temperatures (10K)? We test the hypothesis that a first generation of low-mass stars may heat the gas enough that subsequent thermal fragmentation results in fragments >=10Msun, sufficient to form B stars. We combine ATCA and SMA observations of the massive star-forming region G8.68-0.37 with radiative transfer modeling to derive the present-day conditions in the region and use this to infer the conditions in the past, at the time of core formation. Assuming the current mass/separation of the observed cores equals the fragmentation Jeans mass/length and the region's average density has not changed, requires the gas temperature to have been 100K at the time of fragmentation. The postulated first-generation of low-mass stars would still be around today, but the number required to heat the cloud exceeds the limits imposed by the observations. Several lines of evidence suggest the observed cores in the region should eventually form O stars yet none have sufficient raw material. Even if feedback may have suppressed fragmentation, it was not sufficient to halt it to this extent. To develop into O stars, the cores must obtain additional mass from outside their observationally defined boundaries. The observations suggest they are currently fed via infall from the very massive reservoir (~1500Msun) of gas in the larger pc scale cloud around the star-forming cores. This suggests that massive stars do not form in the collapse of individual massive fragments, but rather in smaller fragments that themselves continue to gain mass by accretion from larger scales.
23 pages, 14 figures. Accepted for publication in ApJ
References in corpus (20)
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- A Minimum Column Density of 1 g cm^-2 for Massive Star Formation
- The Effects of Radiative Transfer on Low-Mass Star Formation
- A Class I and Class II Methanol Maser Survey of Extended Green Objects (EGOs) from the GLIMPSE Survey
- A SCUBA imaging survey of ultracompact HII regions: The environments of massive star formation
- 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
- Multi-wavelength observations of Southern Hot Molecular Cores traced by methanol masers - I. Ammonia and 24 GHz Continuum Data
- Probing the initial conditions of High Mass Star formation -- I. Deuteration and depletion in high mass pre/protocluster clumps
- 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
- Molecular Line Observations of Infrared Dark Clouds: Seeking the Precursors to Intermediate and Massive Star Formation
- The Ionization of Accretion Flows in High Mass Star Formation: W51e2
- A Jet-like Outflow toward the High-Mass (Proto)stellar Object IRAS 18566+0408
- Physical and chemical conditions in methanol maser selected hot-cores and UCHII regions
- Multi-line (sub)millimetre observations of the high-mass proto cluster IRAS 05358+3543
- Millimetre Continuum Observations of Southern Massive Star Formation Regions II. SCUBA observations of cold cores and the dust grain emissivity index
- A Pilot Survey for the HO Southern Galactic Plane Survey (HOPS)
- Mid-Infrared Source Multiplicity within Hot Molecular Cores traced by Methanol Masers
- SiO Outflow Signatures Toward Massive Young Stellar Objects with Linearly Distributed Methanol Masers
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- ALMA survey of massive cluster progenitors from ATLASGAL. Limited fragmentation at the early evolutionary stage of massive clumps
- VLA observations of ammonia in high-mass star formation regions
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- Protostellar Outflow Heating in a Growing Massive Protocluster
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- Line Profiles of Cores within Clusters: II Signatures of Dynamical Collapse during High Mass Star Formation
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- H2O Southern Galactic Plane Survey (HOPS): Paper III - Properties of Dense Molecular Gas across the Inner Milky Way
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- Understanding hydrogen recombination line observations with ALMA and EVLA
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- The molecular emissions and the infall motion in the high-mass young stellar object G8.68-0.37
- VLT near- to mid-IR imaging and spectroscopy of the M17 UC1-IRS5 region
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- Unified Models of Molecular Emission from Class 0 Protostellar Outflow Sources
- A CO observation of the galactic methanol masers
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- Simultaneous 22 GHz Water and 44 GHz Methanol Masers Survey of Ultracompact HII Regions
- The first Galaxy scale hunt for the youngest high-mass protostars