HST-Scale 3D simulations of MHD disc winds : A rotating two-component jet structure
arXiv:1411.3440 · doi:10.1093/mnras/stu2392
Abstract
We present the results of large scale, three-dimensional magneto-hydrodynamics simulations of disc-winds for different initial magnetic field configurations. The jets are followed from the source to 90 AU scale, which covers several pixels of HST images of nearby protostellar jets. Our simulations show that jets are heated along their length by many shocks. We compute the emission lines that are produced, and find excellent agreement with observations. The jet width is found to be between 20 and 30 AU while the maximum velocities perpendicular to the jet is found to be up to above 100 km/s. The initially less open magnetic field configuration simulations results in a wider, two-component jet; a cylindrically shaped outer jet surrounding a narrow and much faster, inner jet. These simulations preserve the underlying Keplerian rotation profile of the inner jet to large distances from the source. However, for the initially most open magnetic field configuration the kink mode creates a narrow corkscrew-like jet without a clear Keplerian rotation profile and even regions where we observe rotation opposite to the disc (counter-rotating). The RW Aur jet is narrow, indicating that the disc field in that case is very open meaning the jet can contain a counter-rotating component that we suggests explains why observations of rotation in this jet has given confusing results. Thus magnetized disc winds from underlying Keplerian discs can develop rotation profiles far down the jet that are not Keplerian.
accepted for publication in MNRAS
References in corpus (6)
- Theory of Star Formation
- MHD simulations of jet acceleration from Keplerian accretion disks: the effects of disk resistivity
- T Tauri Jet Physics Resolved Near The Launching Region with the Hubble Space Telescope
- Supersonic radiatively cooled rotating flows and jets in the laboratory
- Magnetocentrifugal Winds in 3D: Nonaxisymmetric Steady State
- Simulating protostellar jets simultaneously at launching and observational scales
Cited by in corpus (15)
- Kinematics of the jet in M87 on scales of 100 -- 1000 Schwarzschild radii
- The Role of Magnetic Fields in Protostellar Outflows and Star Formation
- Constraining MHD disk winds with ALMA. Apparent rotation signatures and application to HH212
- A Search for Consistent Jet and Disk Rotation Signatures in RY Tau
- Multi-scale view of star formation in IRAS 21078+5211: From clump fragmentation to disk wind
- ALMA observations of the Th 28 protostellar disk - A new example of counter-rotation between disk and optical jet
- MHD simulations of the formation and propagation of protostellar jets to observational length scales
- Transverse velocity shifts in protostellar jets: rotation or velocity asymmetries?
- Outflow-Confined HII regions. II. The Early Break-Out Phase
- X-ray emission from stellar jets by collision against high-density molecular clouds: an application to HH 248
- Studying a precessing jet of a massive young stellar object within a chemically rich region
- Disk Wind Feedback from High-mass Protostars. II. The Evolutionary Sequence
- Binary outflows from young stars: interaction of co-orbital jet and wind
- Gemini-IFU spectroscopy of HH 111
- Super-fast Rotation in the OMC 2/FIR 6b Jet