Interacting Jets from Binary Protostars
arXiv:0711.3144 · doi:10.1051/0004-6361:20078609
Abstract
We investigate potential models that could explain why multiple proto-stellar systems predominantly show single jets. During their formation, stars most frequently produce energetic outflows and jets. However, binary jets have only been observed in a very small number of systems. We model numerically 3D binary jets for various outflow parameters. We also model the propagation of jets from a specific source, namely L1551 IRS 5, known to have two jets, using recent observations as constraints for simulations with a new MHD code. We examine their morphology and dynamics, and produce synthetic emission maps. We find that the two jets interfere up to the stage where one of them is almost destroyed or engulfed into the second one. We are able to reproduce some of the observational features of L1551 such as the bending of the secondary jet. While the effects of orbital motion are negligible over the jets dynamical timeline, their interaction has significant impact on their morphology. If the jets are not strictly parallel, as in most observed cases, we show that the magnetic field can help the collimation and refocusing of both of the two jets.
accepted for publication in A&A
References in corpus (1)
Cited by in corpus (12)
- A near-IR spectroscopic survey of massive jets towards EGOs
- Helical Magnetic Fields in the NGC1333 IRAS 4A Protostellar Outflows
- JWST Observations of Young protoStars (JOYS): Linked accretion and ejection in a Class I protobinary system
- A rotating molecular jet in Orion
- A rotating molecular jet from a Perseus protostar
- The X-ray emission from Z CMa during an FUor-like outburst and the detection of its X-ray jet
- X-ray embedded stars as driving sources of outflow-driven turbulence in OMC1-S
- Recollimation boundary layers as X-ray sources in young stellar jets
- [Fe II] emissions associated with the young interacting binary UY Aurige
- Episodicity in accretion-ejection processes associated with IRAS 15398-3359
- The nature of a primary jet within a circumbinary disc outflow in a young stellar system
- Analysis of the Instability Growth Rate During the Jet - Background Interaction in the Magnetic Field