Context. Water is a key molecule in the star formation process, but its spatial distribution in star-forming regions is not well known. Aims. We study the distribution of dust continuum and H2O and (CO)-C-13 line emission in DR21, a luminous star-forming region with a powerful outflow and a compact H II region. Methods. Herschel-HIFI spectra near 1100 GHz show narrow (CO)-C-13 10-9 emission and H2O 1(11)-0(00) absorption from the dense core and broad emission from the outflow in both lines. The H2O line also shows absorption by a foreground cloud known from ground-based observations of low-J CO lines. Results. The dust continuum emission is extended over 36 \u27\u27 FWHM, while the (CO)-C-13 and H2O lines are confined to approximate to 24 \...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Context. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Water is a key molecule in the star formation process, but its spatial distribution in star-forming ...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Aims: We derive the dense core structure and the water abundance in four massive star-forming region...
To understand the origin of water line emission and absorption during high-mass star formation, we d...
Aims: Following our past study of the distribution of warm gas in the G327.3-0.6 massive star-formin...
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. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Water is a key molecule in the star formation process, but its spatial distribution in star-forming ...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Context. Water is a key molecule in the star formation process, but its spatial distribution in star...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
Aims: We derive the dense core structure and the water abundance in four massive star-forming region...
To understand the origin of water line emission and absorption during high-mass star formation, we d...
Aims: Following our past study of the distribution of warm gas in the G327.3-0.6 massive star-formin...
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. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Context. Water is an important chemical species in the process of star formation, and a sensitive tr...