Context.In young stars, jets are believed to play a role in removing angular momentum from the circumstellar disk, allowing accretion onto the central star. Recent results suggest that in earlier phases of star formation, SiO might trace the primary jet launched close to the protostar, but further observations are required in order to reveal the properties of this molecular component. Aims.We wish to exploit the combination of high angular and spectral resolution provided by millimetre interferometry to investigate the collimation and kinematics of molecular protostellar jets, and their angular momentum content. Methods.We mapped the inner 40″ of the HH212 Class 0 outflow in SiO(2–1), SiO(5–4) and continuum using the Plateau...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceContext: In young stars, jets are believed to play a role in removing angular ...
We mapped the HH212 Class 0 outflow in SiO(2--1, 5--4) and continuum using the PdBI in its extended ...
[[abstract]]We have mapped the SiO J = 5-4 line at 217 GHz from the HH 211 molecular outflow with th...
Context.The bipolar HH 212 outflow has been mapped in SiO using the extended configuration of the Pl...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
Context. The region G24.78+0.08, which is associated with a cluster of high-mass young ste...
International audienceContext: The bipolar HH 212 outflow has been mapped in SiO using the extended ...
International audienceContext: The bipolar HH 212 outflow has been mapped in SiO using the extended ...
Context. The earliest evolutionary stages of low-mass protostars are characterised by hot and fast j...
Context. Fast jets are thought to be a crucial ingredient of star formation because they m...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceContext: In young stars, jets are believed to play a role in removing angular ...
We mapped the HH212 Class 0 outflow in SiO(2--1, 5--4) and continuum using the PdBI in its extended ...
[[abstract]]We have mapped the SiO J = 5-4 line at 217 GHz from the HH 211 molecular outflow with th...
Context.The bipolar HH 212 outflow has been mapped in SiO using the extended configuration of the Pl...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
International audienceContext. The region G24.78+0.08, which is associated with a cluster of high-ma...
Context. The region G24.78+0.08, which is associated with a cluster of high-mass young ste...
International audienceContext: The bipolar HH 212 outflow has been mapped in SiO using the extended ...
International audienceContext: The bipolar HH 212 outflow has been mapped in SiO using the extended ...
Context. The earliest evolutionary stages of low-mass protostars are characterised by hot and fast j...
Context. Fast jets are thought to be a crucial ingredient of star formation because they m...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...
International audienceFast jets are thought to be a crucial ingredient of star formation because the...