The structure formation of the dense interstellar material and the fragmentation of clumps into cores is a fundamental step to understand how stars and stellar clusters form. We aim to establish a statistical view of clump fragmentation at sub-parsec scales based on a large sample of massive clumps selected from the ATLASGAL survey. We used the APEX/SABOCA camera at 350 $\mu$m to image clumps at a resolution of 8.$''$5. The majority of the sample consists of massive clumps that are weak or in absorption at 24 $\mu$m. We resolve rich filamentary structures and identify the population of compact sources. We use association with mid-infrared 22-24 $\mu$m and 70 $\mu$m point sources to pin down the star formation activity of the cores. We then ...
International audienceFragmentation of massive dense molecular clouds is the starting point in the f...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceThe structure formation of the dense interstellar material and the fragmentati...
International audienceThe structure formation of the dense interstellar material and the fragmentati...
Context. The structure formation of the dense interstellar material and the fragmentation of clumps ...
Context. The structure formation of the dense interstellar material and the fragmentation of clumps ...
Context. Fragmentation and feedback are two important processes during the early phases of star form...
The early evolution of massive cluster progenitors is poorly understood. We investigate the fragment...
Context. Fragmentation and feedback are two important processes during the early phases of star form...
Fragmentation of massive dense molecular clouds is the starting point in the formation of rich clust...
Context. The progenitors of high-mass stars and clusters are still challenging to recognise. Only un...
The early evolution of massive cluster progenitors is poorly understood. We investigate the fragment...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceFragmentation of massive dense molecular clouds is the starting point in the f...
International audienceFragmentation of massive dense molecular clouds is the starting point in the f...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceThe structure formation of the dense interstellar material and the fragmentati...
International audienceThe structure formation of the dense interstellar material and the fragmentati...
Context. The structure formation of the dense interstellar material and the fragmentation of clumps ...
Context. The structure formation of the dense interstellar material and the fragmentation of clumps ...
Context. Fragmentation and feedback are two important processes during the early phases of star form...
The early evolution of massive cluster progenitors is poorly understood. We investigate the fragment...
Context. Fragmentation and feedback are two important processes during the early phases of star form...
Fragmentation of massive dense molecular clouds is the starting point in the formation of rich clust...
Context. The progenitors of high-mass stars and clusters are still challenging to recognise. Only un...
The early evolution of massive cluster progenitors is poorly understood. We investigate the fragment...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceFragmentation of massive dense molecular clouds is the starting point in the f...
International audienceFragmentation of massive dense molecular clouds is the starting point in the f...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...
International audienceThe early evolution of massive cluster progenitors is poorly understood. We in...