Context. Massive stars form on different scales that range from large, dispersed OB associations to compact, dense starburst clusters. The complex structure of regions of massive star formation and the involved short timescales provide a challenge for our understanding of their birth and early evolution. As one of the most massive and luminous star-forming region in our Galaxy, W49 is the ideal place to study the formation of the most massive stars. Aims. By classifying the massive young stars that are deeply embedded in the molecular cloud of W49, we aim to investigate and trace the star formation history of this region. Methods. We analyse near-infrared ...
Context. The massive and luminous star-forming region W49A is a well-known Galactic candidate to pro...
International audienceThe evolution of massive stars is only partly understood. Observational constr...
International audienceContext. The evolution of massive stars depends on several parameters, and the...
Context. Very massive stars (M> 100 M⊙) are very rare objects, but have a strong influence on their ...
Context. Very massive stars (M> 100 M) are very rare objects, but have a strong influence on thei...
We present results from JHKs imaging of the densest region of the W49 molecular cloud. In a recent p...
We present results from JHKs imaging of the densest region of the W49 molecular cloud. In a recent p...
Context. The interplay between the formation of stars, stellar feedback and cloud properties strongl...
Massive stars form on different scales, ranging from large, dispersed OB associations to compact, de...
International audienceContext. The evolution of massive stars is not fully constrained. Studies of y...
We present near-infrared JHKs imaging as well as K-band multi-object spectroscopy of the massive ste...
Context. Massive stars play a dominant role in the process of clustered star formation, with their f...
today Context. Massive stars play a dominant role in the process of clustered star formation, with t...
Context. Massive stars play a dominant role in the process of clustered star formation, with their f...
Context. Young massive stars and stellar clusters continuously form in the Galactic disk, generating...
Context. The massive and luminous star-forming region W49A is a well-known Galactic candidate to pro...
International audienceThe evolution of massive stars is only partly understood. Observational constr...
International audienceContext. The evolution of massive stars depends on several parameters, and the...
Context. Very massive stars (M> 100 M⊙) are very rare objects, but have a strong influence on their ...
Context. Very massive stars (M> 100 M) are very rare objects, but have a strong influence on thei...
We present results from JHKs imaging of the densest region of the W49 molecular cloud. In a recent p...
We present results from JHKs imaging of the densest region of the W49 molecular cloud. In a recent p...
Context. The interplay between the formation of stars, stellar feedback and cloud properties strongl...
Massive stars form on different scales, ranging from large, dispersed OB associations to compact, de...
International audienceContext. The evolution of massive stars is not fully constrained. Studies of y...
We present near-infrared JHKs imaging as well as K-band multi-object spectroscopy of the massive ste...
Context. Massive stars play a dominant role in the process of clustered star formation, with their f...
today Context. Massive stars play a dominant role in the process of clustered star formation, with t...
Context. Massive stars play a dominant role in the process of clustered star formation, with their f...
Context. Young massive stars and stellar clusters continuously form in the Galactic disk, generating...
Context. The massive and luminous star-forming region W49A is a well-known Galactic candidate to pro...
International audienceThe evolution of massive stars is only partly understood. Observational constr...
International audienceContext. The evolution of massive stars depends on several parameters, and the...