Context: The formation process of high-mass stars (>8 M⊙) is poorly constrained, particularly the effects of clump fragmentation creating multiple systems and the mechanism of mass accretion onto the cores. Aims: We study the fragmentation of dense gas clumps, and trace the circumstellar rotation and outflows by analyzing observations of the high-mass (~500 M⊙) star-forming region IRAS 23033+5951. Methods: Using the Northern Extended Millimeter Array (NOEMA) in three configurations and the IRAM 30 m single-dish telescope at 220 GHz, we probe the gas and dust emission at an angular resolution of ~0.45′′, corresponding to 1900 au. Results: In the millimeter (mm) continuum emission, we identify a protostellar cluster with at least fou...
Aims: We aim to understand the fragmentation as well as the disk formation, outflow generation and c...
Context. High-mass stars form in clusters, but neither the early fragmentation processes nor the det...
The fragmentation mode of high-mass molecular clumps and the properties of the central rotating stru...
Context. The formation process of high-mass stars (> 8 M�) is poorly constrained, particularly, the ...
The formation process of high-mass stars (>8M.) is poorly constrained, particularly, the effects of ...
Context. The formation process of high-mass stars (>8 M⊙) is poorly constrained, particularly the ef...
Context. The formation process of high-mass stars (>8 M☉) is poorly constrained, particularly the...
Context. The formation process of high-mass stars (>8 M⊙) is poorly constrained, particularly the ef...
Context: High-mass stars form in clusters, but neither the early fragmentation processes nor the det...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context: The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The formation of high-mass star-forming regions from their parental gas cloud and the subse...
Aims: We aim to understand the fragmentation as well as the disk formation, outflow generation and c...
Aims: We aim to understand the fragmentation as well as the disk formation, outflow generation and c...
Context. High-mass stars form in clusters, but neither the early fragmentation processes nor the det...
The fragmentation mode of high-mass molecular clumps and the properties of the central rotating stru...
Context. The formation process of high-mass stars (> 8 M�) is poorly constrained, particularly, the ...
The formation process of high-mass stars (>8M.) is poorly constrained, particularly, the effects of ...
Context. The formation process of high-mass stars (>8 M⊙) is poorly constrained, particularly the ef...
Context. The formation process of high-mass stars (>8 M☉) is poorly constrained, particularly the...
Context. The formation process of high-mass stars (>8 M⊙) is poorly constrained, particularly the ef...
Context: High-mass stars form in clusters, but neither the early fragmentation processes nor the det...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context: The fragmentation mode of high-mass molecular clumps and the properties of the central rota...
Context. The formation of high-mass star-forming regions from their parental gas cloud and the subse...
Aims: We aim to understand the fragmentation as well as the disk formation, outflow generation and c...
Aims: We aim to understand the fragmentation as well as the disk formation, outflow generation and c...
Context. High-mass stars form in clusters, but neither the early fragmentation processes nor the det...
The fragmentation mode of high-mass molecular clumps and the properties of the central rotating stru...