Massive Star Formation
arXiv:0711.4912 · doi:10.1007/978-1-4020-5425-9_4
Abstract
This chapter reviews progress in the field of massive star formation. It focuses on evidence for accretion and current models that invoke high accretion rates. In particular it is noted that high accretion rates will cause the massive young stellar object to have a radius much larger than its eventual main sequence radius throughout much of the accretion phase. This results in low effective temperatures which may provide the explanation as to why luminous young stellar objects do not ionized their surroundings to form ultra-compact H II regions. The transition to the ultra-compact H II region phase would then be associated with the termination of the high accretion rate phase. Objects thought to be in a transition phase are discussed and diagnostic diagrams to distinguish between massive young stellar objects and ultra-compact H II regions in terms of line widths and radio luminosity are presented.
21 pages, 6 figures, chapter in Diffuse Matter from Star Forming Regions to Active Galaxies - A Volume Honouring John Dyson, Edited by T.W. Hartquist, J. M. Pittard, and S. A. E. G. Falle. Series: Astrophysics and Space Science Proceedings. Springer Dordrecht, 2007, p.61
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- Evolution of Massive Protostars via Disk Accretion
- A Class I and Class II Methanol Maser Survey of Extended Green Objects (EGOs) from the GLIMPSE Survey
- ATLASGAL --- towards a complete sample of massive star forming clumps
- Disk-mediated accretion burst in a high-mass young stellar object
- The Co-ordinated Radio and Infrared Survey for High Mass Star Formation (The CORNISH Survey) - I. Survey Design
- The Luminosity Functions and Timescales of MYSOs and Compact HII regions
- A wide-angle outflow with the simultaneous presence of a high-velocity jet in the high-mass Cepheus A HW2 system
- Resolved 24.5 micron emission from massive young stellar objects
- The origin of mid-infrared emission in massive young stellar objects: multi-baseline VLTI observations of W33A
- The ATLASGAL survey: The sample of young massive cluster progenitors
- A high-frequency radio continuum study of massive young stellar objects
- A distance limited sample of massive star forming cores from the RMS survey
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- Protostellar Outflows at the EarliesT Stages (POETS). I. Radio thermal jets at high resolution nearby HO maser sources
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- The evolution of young HII regions
- Protostar mass functions in young clusters
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- ASGARD: A Large Survey for Slow Galactic Radio Transients. I. Overview and First Results
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- Formation and evolution of the water maser outflow event in AFGL 2591 VLA 3-N
- The location, clustering, and propagation of massive star formation in giant molecular clouds
- Connecting low- and high-mass star formation: the intermediate-mass protostar IRAS 05373+2349 VLA 2
- Multi-wavelength modelling of the circumstellar environment of the massive proto-star AFGL 2591 VLA 3
- VISIR-VLT high resolution study of the extended emission of four obscured post-AGB candidates
- Galactic kU-band Thermal Survey (GUTS)