Protostellar Outflows at the EarliesT Stages (POETS) V. The launching mechanism of protostellar winds via water masers
arXiv:2408.11968 · doi:10.1051/0004-6361/202451244
Abstract
Understanding the launching mechanism of winds and jets remains one of the fundamental challenges in astrophysics. The Protostellar Outflows at the EarliesT Stages (POETS) survey has recently mapped the 3D velocity field of the protostellar winds in a sample (37) of luminous young stellar objects (YSOs) at scales of 10-100 au via very long baseline interferometry (VLBI) observations of the 22 GHz water masers. In most of the targets, the distribution of the 3D maser velocities can be explained in terms of a magnetohydrodynamic (MHD) disk wind (DW). We have performed Very Long Baseline Array observations of the 22 GHz water masers in IRAS 21078+5211, the most promising MHD DW candidate from the POETS survey, to determine the 3D velocities of the gas flowing along several wind streamlines previously identified at a linear resolution of ~1 au. Near the YSO at small separations along ( au) and across ( au) the jet axis, water masers trace three individual DW streamlines. By exploiting the 3D kinematic information of the masers, we determined the launch radii of these streamlines with an accuracy of 1 au, and they lie in the range of 10-50 au. At increasingly greater distances along the jet (110 au au), the outflowing gas speeds up while it collimates close to the jet axis. Magneto-centrifugal launching in a radially extended MHD DW appears to be the only viable process to explain the fast (up to 60 km/s) and collimated (down to 10 degree) velocities of the wind in correspondence with launch radii ranging between 10 and 50 au. At larger separations from the jet axis ( au), the water masers trace a slow (20 km/s), radially expanding arched shock-front with kinematics inconsistent with magneto-centrifugal launching. Our resistive-magnetohydrodynamical simulations indicate that this shock-front could be driven by magnetic pressure.
21 pages, 9 figures, accepted for publication in A&A
References in corpus (11)
- Trigonometric Parallaxes Of High-Mass Star Forming Regions: Our View Of The Milky Way
- ALMA discovery of a rotating SO/SO flow in HH212. A possible MHD disk wind?
- Constraining MHD disk winds with ALMA. Apparent rotation signatures and application to HH212
- Multi-scale view of star formation in IRAS 21078+5211: From clump fragmentation to disk wind
- Snapshot of a magnetohydrodynamic disk wind traced by water maser observations
- Modeling disks and magnetic outflows around a forming massive star: I. Investigating the two layer-structure of the accretion disk
- Angular Momentum in Disk Wind Revealed in the Young Star MWC349A
- Zooming into the Collimation Zone in a Massive Protostellar Jet
- Modeling disks and magnetic outflows around a forming massive star: II. Dynamics of jets from massive protostars
- Resolving the collimation zone of an intermediate-mass protostar
- The magnetic field of a magnetohydrodynamic disk wind: Water maser observations and simulations