Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood, and represents a challenge from both the theoretical and observational points of view. The advent of the Atacama Large Millimeter Array (ALMA) is expected to provide observational evidence to better constrain the theoretical scenarios. Aims: The present study aims at characterizing the high-mass star forming region G35.20-0.74 N, which is found associated with at least one massive outflow and contains multiple dense cores, one of them recently found associated with a Keplerian rotating disk. Methods: We used the radio-interferometer ALMA to observe the G35.20-0.74 N region in the submillimeter continuum and line emission at 350 GHz. The observe...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Aims: We resolve the small-scale structure around the high-mass hot core region G351.77-0.54 to inve...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Context. The formation process of high-mass stars (with masses >8 M_⊙) is still poorly understood, ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M_⊙) is still poorly understood, ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The fragmentation of high-mass gas clumps and the formation of the accompanying accretion d...
Context. The fragmentation of high-mass gas clumps and the formation of the accompanying accretion d...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated accretion. A...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Aims: We resolve the small-scale structure around the high-mass hot core region G351.77-0.54 to inve...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Context. The formation process of high-mass stars (with masses >8 M_⊙) is still poorly understood, ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M_⊙) is still poorly understood, ...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood,...
Context. The fragmentation of high-mass gas clumps and the formation of the accompanying accretion d...
Context. The fragmentation of high-mass gas clumps and the formation of the accompanying accretion d...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated accretion. A...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Aims: We resolve the small-scale structure around the high-mass hot core region G351.77-0.54 to inve...