A statistical study of the properties of molecular outflows is performed based on an up-to-date sample. 391 outflows were identified in published articles or preprints before February 28, 2003. The parameters of position, morphology, mass, energy, outflow dynamics and central source luminosity are presented for each outflow source. Outflow lobe polarity is known for all the sources, and 84% are found to be bipolar. The sources are divided into low mass and high mass groups according to either the available bolometric luminosity of the central source or the outflow mass. The pace of discovery of outflows over the past seven years has increased much more rapidly than in previous periods. Surveys for outflows are still continuing. The number o...
We present a study of molecular outflows using high-resolution mapping of the CO (1-0) line emission...
During their birth all stars undergo periods of copious mass loss, frequently characterized by the o...
By mapping the (CO)-C-12 J = 1-0 lines in IRAS 05391-0217, 06114 + 1745 and 06291 + 0421, three new ...
A statistical study of the properties of molecular outflows is performed based on an up-to-date sam...
A statistical study of the properties of molecular outflows is performed based on an up-to-date sam...
We have observed 99 mid-infrared-bright, massive young stellar objects and compact H?ii regions draw...
Received; accepted Context. Theoretical models suggest that massive stars form via disk-mediated acc...
We review the known properties of molecular outflows from low- and high-mass young stars. General tr...
We present a comprehensive catalogue of 264 high velocity molecular outflow sources that are compile...
With the aim of understanding the role of massive outflows in high-mass star formation, we mapped in...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
We have observed 99 mid-infrared-bright, massive young stellar objects and compact H ii regions draw...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
We present a study of molecular outflows using high-resolution mapping of the CO (1-0) line emission...
During their birth all stars undergo periods of copious mass loss, frequently characterized by the o...
By mapping the (CO)-C-12 J = 1-0 lines in IRAS 05391-0217, 06114 + 1745 and 06291 + 0421, three new ...
A statistical study of the properties of molecular outflows is performed based on an up-to-date sam...
A statistical study of the properties of molecular outflows is performed based on an up-to-date sam...
We have observed 99 mid-infrared-bright, massive young stellar objects and compact H?ii regions draw...
Received; accepted Context. Theoretical models suggest that massive stars form via disk-mediated acc...
We review the known properties of molecular outflows from low- and high-mass young stars. General tr...
We present a comprehensive catalogue of 264 high velocity molecular outflow sources that are compile...
With the aim of understanding the role of massive outflows in high-mass star formation, we mapped in...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
We have observed 99 mid-infrared-bright, massive young stellar objects and compact H ii regions draw...
International audienceContext. Theoretical models suggest that massive stars form via disk-mediated ...
We present a study of molecular outflows using high-resolution mapping of the CO (1-0) line emission...
During their birth all stars undergo periods of copious mass loss, frequently characterized by the o...
By mapping the (CO)-C-12 J = 1-0 lines in IRAS 05391-0217, 06114 + 1745 and 06291 + 0421, three new ...