International audienceWater probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in molecular outflows. It is a key molecule for exploring whether the physical properties of low-mass protostars can be extrapolated to massive YSOs. As part of the WISH key programme, we investigate the dynamics and the excitation conditions of shocks along the outflow cavity wall as function of source luminosity. Velocity-resolved Herschel-HIFI spectra of the H2O 988, 752, 1097 GHz and 12CO J=10-9, 16-15 lines were analysed for 52 YSOs with bolometric luminosities (L_bol) ranging from 10^5 L_sun. The profiles of the H2O lines are similar, indicating that they probe the same gas. We see two main Gaussian emission components in all...
Context. Water is a key constituent of star-forming matter, but the origin of its line emission and ...
CONTEXT. Our understanding of the star formation process has traditionally been confined to certain ...
International audienceContext. Through spectrally unresolved observations of high-J CO transitions, ...
Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in molecula...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
International audience(Abridged) We use HIFI maps of the 987 GHz H2O 2(02)-1(11) emission to measure...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obse...
Aims: “Water In Star-forming regions with Herschel” (WISH) is a Herschel key programme aimed at unde...
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. Our understanding of the star formation process has traditionally been confined to certain ...
International audienceContext. Through spectrally unresolved observations of high-J CO transitions, ...
Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in molecula...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
Context. Water probes the dynamics in young stellar objects (YSOs) effectively, especially shocks in...
International audience(Abridged) We use HIFI maps of the 987 GHz H2O 2(02)-1(11) emission to measure...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obse...
Aims: “Water In Star-forming regions with Herschel” (WISH) is a Herschel key programme aimed at unde...
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. Our understanding of the star formation process has traditionally been confined to certain ...
International audienceContext. Through spectrally unresolved observations of high-J CO transitions, ...