Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensitive to both the physical conditions associated with the interaction of supersonic outflows with the ambient medium and the chemical processes at play. Aims. Our goal is to investigate the spatial and velocity distribution of H2O along outflows, its relationship with other tracers, and its abundance variations. In particular, this study focuses on the outflow driven by the low-mass protostar L1448-C, which previous observations have shown to be one of the brightest H2O emitters among the class 0 outflows. Methods. To this end, maps of the o-H2O 1(10)-1(01) and 2(12)-1(01) transitions taken with the Herschel-HIFI and PACS instruments, respect...
Context. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Context. Water is a potential tracer of outflow activity because it is heavily depleted in cold am...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sens...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely se...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obse...
Context. Water is a key molecule in protostellar environments because its line emission is very sens...
Context. Apart from being an important coolant, water is known to be a tracer of high-velocity molec...
Aims. In the framework of the Water In Star-forming regions with Herschel (WISH) key program, severa...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Context. Outflows are an important part of the star formation process as both the result of ongoing ...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obs...
Context. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Context. Water is a potential tracer of outflow activity because it is heavily depleted in cold am...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sens...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely sensit...
Context. Water is a key probe of shocks and outflows from young stars because it is extremely se...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obse...
Context. Water is a key molecule in protostellar environments because its line emission is very sens...
Context. Apart from being an important coolant, water is known to be a tracer of high-velocity molec...
Aims. In the framework of the Water In Star-forming regions with Herschel (WISH) key program, severa...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Context. Outflows are an important part of the star formation process as both the result of ongoing ...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Context. The far-IR/sub-mm spectral mapping facility provided by the Herschel-PACS and HIFI instrume...
Aims. As part of the WISH (Water In Star-forming regions with Herschel) key project, systematic obs...
Context. The physical conditions during high-mass star formation are poorly understood. Outflow and ...
Aims. We derive the dense core structure and the water abundance in four massive star-forming region...
Context. Water is a potential tracer of outflow activity because it is heavily depleted in cold am...