The results of a detailed analysis of SMA, VLA, and IRAM observations of the region of massive star formation S255N in CO(2–1), N2H+(3–2), NH3(1, 1), C18O(2–1) and some other lines is presented. Combining interferometer and single-dish data has enabled a more detailed investigation of the gas kinematics in the moleclar core on various spatial scales. There are no signs of rotation or isotropic compression on the scale of the region as whole. The largest fragments of gas (≈0.3 pc) are located near the boundary of the regions of ionized hydrogen S255 and S257. Some smaller-scale fragments are associated with protostellar clumps. The kinetic temperatures of these fragments lie in the range 10–80 K. A circumstellar torus with inner radius Rin ≈...
Context. Two competing models describe the formation of massive stars in objects like the Orion Trap...
International audienceAims. Massive stars formin clusters, and they are often found in different evo...
International audienceAims. Current star formation research centers the characterization of the phys...
We present observational data for two main components (S255IR and S255N) of the S255 high mass star-...
We present a picture of star formation around the H ii region Sh2-235 (S235) based upon data on the ...
We present observations of the intermediate to massive star‐forming region I05345+3157 using the mol...
Gas density and temperature in star-forming regions around Sh2-235 are derived from ammonialine obse...
International audienceWe present observational data for two main components (S255IR and S255N) of th...
International audienceWe report the results of our observations of the S255IR area with the Submilli...
We report the results of our observations of the S255IR area with the Submillimeter Array (SMA) at 1...
The main objective of this paper is to study the possibility of triggered star formation on the bord...
Context. Searching for disk-outflow systems in massive star-forming regions is a key to assessing th...
Star formation is thought to be driven by two groups of mechanisms; spontaneous collapse and trigger...
Context. The mid- and far-infrared view on high-mass star formation, in particular with the results ...
Star formation is thought to be driven by two groups of mechanisms; spontaneous collapse and trigger...
Context. Two competing models describe the formation of massive stars in objects like the Orion Trap...
International audienceAims. Massive stars formin clusters, and they are often found in different evo...
International audienceAims. Current star formation research centers the characterization of the phys...
We present observational data for two main components (S255IR and S255N) of the S255 high mass star-...
We present a picture of star formation around the H ii region Sh2-235 (S235) based upon data on the ...
We present observations of the intermediate to massive star‐forming region I05345+3157 using the mol...
Gas density and temperature in star-forming regions around Sh2-235 are derived from ammonialine obse...
International audienceWe present observational data for two main components (S255IR and S255N) of th...
International audienceWe report the results of our observations of the S255IR area with the Submilli...
We report the results of our observations of the S255IR area with the Submillimeter Array (SMA) at 1...
The main objective of this paper is to study the possibility of triggered star formation on the bord...
Context. Searching for disk-outflow systems in massive star-forming regions is a key to assessing th...
Star formation is thought to be driven by two groups of mechanisms; spontaneous collapse and trigger...
Context. The mid- and far-infrared view on high-mass star formation, in particular with the results ...
Star formation is thought to be driven by two groups of mechanisms; spontaneous collapse and trigger...
Context. Two competing models describe the formation of massive stars in objects like the Orion Trap...
International audienceAims. Massive stars formin clusters, and they are often found in different evo...
International audienceAims. Current star formation research centers the characterization of the phys...