Aims: We study the velocity and magnetic field morphology in the vicinity (<1000 AU) of a massive young stellar object (YSO) at very high spatial resolution (10-100 AU). Methods: We performed milliarcsecond polarimetric observations of the strong CH3OH maser emission observed in the vicinity of an O-type YSO in G023.01-00.41. We combined this information with the velocity field of the CH3OH masing gas previously measured at the same angular resolution. We analyzed the velocity and magnetic fields in the reference system defined by the direction of the molecular outflow and the equatorial plane of the hot molecular core at its base, as recently observed on subarcsecond scales. Results: We provide a first detailed picture of the gas dynamic...
We present VLBA observations of 1667 MHz OH maser emission from the massive star formation region G5...
Contains fulltext : 150806.pdf (preprint version ) (Open Access
The formation process of high-mass stars (M > 8Msun) is still unclear; this is mainly due to thei...
Aims: We study the velocity and magnetic field morphology in the vicinity ( Methods: We performed m...
Aims. We study the velocity and magnetic field morphology in the vicinity (<1000 AU) of a massive yo...
We presented a comprehensive view, from scales of 0.1 pc down to 100 AU, of the gas dynamics driven ...
Magnetic fields have only recently been included in theoretical simulations of high-mass star format...
Aims. We performed a detailed study of maser and radio continuum emission toward the high-mass star-...
Context. Magnetohydrodynamical simulations show that the magnetic field can drive molecular outflows...
Context. Magnetohydrodynamical simulations show that the magnetic field can drive molecular outflows...
Context. Theoretical simulations and observations at different angular resolutions have shown that m...
Context. Magnetic fields have only recently been included in theoretical simulations of high-mass st...
Context. Recent detections of disks around young high-mass stars support the idea of massive star fo...
Context. In high-mass >= M-circle dot) star formation (SF) studies, high -angular resolution is cruc...
A full understanding of high-mass star formation requires the study of one of the most elusive compo...
We present VLBA observations of 1667 MHz OH maser emission from the massive star formation region G5...
Contains fulltext : 150806.pdf (preprint version ) (Open Access
The formation process of high-mass stars (M > 8Msun) is still unclear; this is mainly due to thei...
Aims: We study the velocity and magnetic field morphology in the vicinity ( Methods: We performed m...
Aims. We study the velocity and magnetic field morphology in the vicinity (<1000 AU) of a massive yo...
We presented a comprehensive view, from scales of 0.1 pc down to 100 AU, of the gas dynamics driven ...
Magnetic fields have only recently been included in theoretical simulations of high-mass star format...
Aims. We performed a detailed study of maser and radio continuum emission toward the high-mass star-...
Context. Magnetohydrodynamical simulations show that the magnetic field can drive molecular outflows...
Context. Magnetohydrodynamical simulations show that the magnetic field can drive molecular outflows...
Context. Theoretical simulations and observations at different angular resolutions have shown that m...
Context. Magnetic fields have only recently been included in theoretical simulations of high-mass st...
Context. Recent detections of disks around young high-mass stars support the idea of massive star fo...
Context. In high-mass >= M-circle dot) star formation (SF) studies, high -angular resolution is cruc...
A full understanding of high-mass star formation requires the study of one of the most elusive compo...
We present VLBA observations of 1667 MHz OH maser emission from the massive star formation region G5...
Contains fulltext : 150806.pdf (preprint version ) (Open Access
The formation process of high-mass stars (M > 8Msun) is still unclear; this is mainly due to thei...