The infrared dark cloud (IRDC) G028.23-00.19 hosts a massive (1500M(circle dot)), cold (12 K), and 3.6-70 mu m IR dark clump (MM1) that has the potential to form high-mass stars. We observed this prestellar clump candidate with the Submillimeter Array (similar to 3 ''.5 resolution) and Jansky Very Large Array (similar to 2 ''.1 resolution) in order to characterize the early stages of high-mass star formation and to constrain theoretical models. Dust emission at 1.3 mm wavelength reveals five cores with masses <= 15Me(circle dot). None of the cores currently have the mass reservoir to form a high-mass star in the prestellar phase. If the MM1 clump will ultimately form high-mass stars, its embedded cores must gather a significant amount of ad...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
Massive stars (M greater than or similar to 10M(circle dot)) form from collapse of parsec-scale mole...
With a mass of similar to 1000 M (circle dot) and a surface density of similar to 0.5 g cm(-2), G023...
The infrared dark clouds (IRDCs) G11.11−0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
The infrared dark clouds (IRDCs) G11.11−0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
Using Galactic Plane surveys, we have selected a massive (1200M circle dot), cold (14 K) 3.6-70 mu m...
High-mass stars play a key role in the energetics and chemical evolution of molecular clouds and...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
The infrared dark clouds (IRDCs) G11.11-0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
Massive stars (M greater than or similar to 10M(circle dot)) form from collapse of parsec-scale mole...
With a mass of similar to 1000 M (circle dot) and a surface density of similar to 0.5 g cm(-2), G023...
The infrared dark clouds (IRDCs) G11.11−0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
The infrared dark clouds (IRDCs) G11.11−0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
Using Galactic Plane surveys, we have selected a massive (1200M circle dot), cold (14 K) 3.6-70 mu m...
High-mass stars play a key role in the energetics and chemical evolution of molecular clouds and...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
The infrared dark clouds (IRDCs) G11.11-0.12 and G28.34+0.06 are two of the best-studied IRDCs in ou...
Context. The different theoretical models concerning the formation of high-mass stars make distinct ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...
International audienceAims. To constrain the physical processes that lead to the birth of high-mass ...