The importance of a Dome C facility for studies of massive star formation is highlighted. Using an example of a statistical study of 380 candidate massive protostars based on the GLIMPSE legacy program data from the Spitzer Space Telescope, the relevance of a Dome C facility for further science progress is argued. The GLIMPSE point source photometry was used to a conduct colour-magnitude analysis, and radiative transfer modelling of the spectral energy distributions of the massive protostars. The results support an accretion scenario for the process of massive star formation up to masses of 50 M๏. The available spectral energy distrubutions of the massive protostellar candidates are largely inadequate in the crucial bands from 10...
Unlike the formation of Solar-type stars, the formation of massive stars (M>8 Msun) is not yet well ...
International audienceThe mass growth of protostars is a central element to the determination of fun...
Context: Massive stars form in dense and massive molecular cores. The exact formation mechanism is u...
We present preliminary results of an effort to inventory the protostellar content of 20 massive star...
Context. Due to the sparsity and rapid evolution of high-mass stars, a detailed picture of the evolu...
Context: Due to the short timescales involved and observational difficulties, our knowledge of the e...
Aims.We conduct a statistical study of candidate massive protostellar objects in the 3.6–8.0 μm ban...
Author Institution: Department of Astronomy, University of Illinois, 1002 W. Grenn St., Urb; ana, IL...
A model for massive stars is constructed by piecing together evolutionary algorithms for the protost...
19 pages, 17 figures, accepted by A&A the 3 June 2008International audienceThe study of physical and...
We present an overview and first results of the Stratospheric Observatory For Infrared Astronomy Mas...
We present 30 and 40 μm imaging of the massive protostar G35.20-0.74 with SOFIA-FORCAST. The high su...
Aims. To conduct a statistical study of candidate massive protostellar objects in the 3.6–8.0 µm ban...
The study of the formation of massive stars presents complex challenges from both theoretical and ob...
At the onset of high-mass star formation, accreting protostars are deeply embedded in massive cores ...
Unlike the formation of Solar-type stars, the formation of massive stars (M>8 Msun) is not yet well ...
International audienceThe mass growth of protostars is a central element to the determination of fun...
Context: Massive stars form in dense and massive molecular cores. The exact formation mechanism is u...
We present preliminary results of an effort to inventory the protostellar content of 20 massive star...
Context. Due to the sparsity and rapid evolution of high-mass stars, a detailed picture of the evolu...
Context: Due to the short timescales involved and observational difficulties, our knowledge of the e...
Aims.We conduct a statistical study of candidate massive protostellar objects in the 3.6–8.0 μm ban...
Author Institution: Department of Astronomy, University of Illinois, 1002 W. Grenn St., Urb; ana, IL...
A model for massive stars is constructed by piecing together evolutionary algorithms for the protost...
19 pages, 17 figures, accepted by A&A the 3 June 2008International audienceThe study of physical and...
We present an overview and first results of the Stratospheric Observatory For Infrared Astronomy Mas...
We present 30 and 40 μm imaging of the massive protostar G35.20-0.74 with SOFIA-FORCAST. The high su...
Aims. To conduct a statistical study of candidate massive protostellar objects in the 3.6–8.0 µm ban...
The study of the formation of massive stars presents complex challenges from both theoretical and ob...
At the onset of high-mass star formation, accreting protostars are deeply embedded in massive cores ...
Unlike the formation of Solar-type stars, the formation of massive stars (M>8 Msun) is not yet well ...
International audienceThe mass growth of protostars is a central element to the determination of fun...
Context: Massive stars form in dense and massive molecular cores. The exact formation mechanism is u...