Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of forming a high-mass cluster: its extremely low dust temperature, high mass, and high density, combined with its lack of prevalent star formation, make it an excellent candidate for an Arches-like cluster in a very early stage of formation. Here we present new Atacama Large Millimeter/Sub-millimeter Array observations of its small-scale (∼0.07 pc) 3 mm dust continuum and molecular line emission from 17 different species that probe a range of distinct physical and chemical conditions. The data reveal a complex network of emission features with a complicated velocity structure: there is emission on all spatial scales, the morphology of which r...
Context. Theoretical scenarios propose that high-mass stars are formed by disk-mediated ac...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Fragmentation of massive dense molecular clouds is the starting point in the formation of rich clust...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
© 2015. The American Astronomical Society. All rights reserved. G0.253+0.016 is a molecular clump th...
G0.253+0.016 is a molecular clump that appears to be on the verge of forming a high mass, Arches-lik...
Stellar feedback from high-mass stars (e.g., H II regions) can strongly influence the surrounding in...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood, an...
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 audienceFragmentation of massive dense molecular clouds is the starting point in the f...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
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...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Fragmentation of massive dense molecular clouds is the starting point in the formation of rich clust...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
Artículo de publicación ISIG0.253+0.016 is a molecular clump that appears to be on the verge of form...
© 2015. The American Astronomical Society. All rights reserved. G0.253+0.016 is a molecular clump th...
G0.253+0.016 is a molecular clump that appears to be on the verge of forming a high mass, Arches-lik...
Stellar feedback from high-mass stars (e.g., H II regions) can strongly influence the surrounding in...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still poorly understood, an...
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 audienceFragmentation of massive dense molecular clouds is the starting point in the f...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
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...
Context. The formation process of high-mass stars (with masses >8 M⊙) is still ...
Fragmentation of massive dense molecular clouds is the starting point in the formation of rich clust...