Context. Water is an important chemical species in the process of star formation, and a sensitive tracer of physical conditions in star-forming regions because of its rich line spectrum and large abundance variations between hot and cold regions. Aims: We use spectrally resolved observations of rotational lines of H2O and its isotopologs to constrain the physical conditions of the water emitting region toward the high-mass protostar AFGL 2591. Methods: Herschel/HIFI spectra from 552 up to 1669 GHz show emission and absorption in 14 lines of H 2 O, H218O, and H217O. We decompose the line profiles into contributions from the protostellar envelope, the bipolar outflow, and a foreground cloud. We use analytical estimates and rotation diagrams t...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
(Abridged) We use HIFI maps of the 987 GHz H2O 2(02)-1(11) emission to measure the sizes and shapes ...
International audienceWe derive the dense core structure and the water abundance in four massive sta...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Water is a sensitive tracer of physical conditions in star-forming regions because of its large abun...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
International audienceTo understand the origin of water line emission and absorption during high-mas...
Context. Water is a key tracer of dynamics and chemistry in low-mass star-forming regions, but spect...
International audience(Abridged) Water is a key tracer of dynamics and chemistry in low-mass protost...
Context. Water is a key tracer of dynamics and chemistry in low-mass star-forming regions, but spect...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
(Abridged) We use HIFI maps of the 987 GHz H2O 2(02)-1(11) emission to measure the sizes and shapes ...
International audienceWe derive the dense core structure and the water abundance in four massive sta...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Water is a sensitive tracer of physical conditions in star-forming regions because of its large abun...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
International audienceTo understand the origin of water line emission and absorption during high-mas...
Context. Water is a key tracer of dynamics and chemistry in low-mass star-forming regions, but spect...
International audience(Abridged) Water is a key tracer of dynamics and chemistry in low-mass protost...
Context. Water is a key tracer of dynamics and chemistry in low-mass star-forming regions, but spect...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
(Abridged) We use HIFI maps of the 987 GHz H2O 2(02)-1(11) emission to measure the sizes and shapes ...
International audienceWe derive the dense core structure and the water abundance in four massive sta...