We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. The o-H_(2)^(17)O 1_(10)-1_(01), p-H_(2_^(18)O 1_(11)-0_(00), p-H_(2)O 2_(02)-1_(11), p-H_(2)O 1_(11)-0_(00), o-H_(2)O 2_(21)-2_(12), and o-H_(2)O 2_(12)-1_(01) lines, covering a frequency range from 552 up to 1669 GHz, have been detected at high spectral resolution with HIFI. The water lines in W3 IRS5 show well-defined high-velocity wings that indicate a clear contribution by outflows. Moreover, the systematically blue-shifted absorption in the H_(2)_O lines suggests expansion, presumably driven by the outflow. No infall signatures are detected. The p-H_(2)O 1_(11)-0_(00) and o-H_(2)O 2_(12)-1_(01) lines show absorption from the cold materia...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
International audienceWe derive the dense core structure and the water abundance in four massive sta...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
International audienceWe derive the dense core structure and the water abundance in four massive sta...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
We present Herschel observations of the water molecule in the massive star-forming region W3 IRS5. T...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
International audienceWe derive the dense core structure and the water abundance in four massive sta...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...