Magnetic Nested-wind Scenarios for Bipolar Outflows: Pre-planetary and YSO nebular shaping
arXiv:0909.1100 · doi:10.1088/0004-637X/707/2/1485
Abstract
We present results of a series of magnetohydrodynamic (MHD) and hydro- dynamic (HD) 2.5D simulations of the morphology of outflows driven by nested wide-angle winds - i.e. winds which eminate from a central star as well as from an orbiting accretion disk. While our results are broadly relevent to nested wind systems we have tuned the parameters of the simulations to touch on issues in both Young Stellar Objects and Planetary Nebula studies. In particular our studies connect to open issues in the early evolution of Planetary Nebulae. We find that nested MHD winds exhibit marked morphological differences from the single MHD wind case along both dimensions of the flow. Nested HD winds on the other hand give rise mainly to geometric distortions of an outflow that is topologically similar to the flow arising from a single stellar HD wind. Our MHD results are insensitive to changes in ambient temperature between ionized and un-ionized circumstellar environments. The results are sensitive to the relative mass-loss rates, and to the relative speeds of the stellar and disk winds. We also present synthetic emission maps of both nested MHD and HD simulations. We find that nested MHD winds show knots of emission appearing on-axis that do not appear in the HD case.
28 pages, 8 figures
References in corpus (11)
- Low-Mass Binary Induced Outflows from Asymptotic Giant Branch Stars
- Isolated vs. Common Envelope Dynamos in Planetary Nebula Progenitors
- Simulating Magnetohydrodynamical Flow with Constrained Transport and Adaptive Mesh Refinement; Algorithms & Tests of the AstroBEAR Code
- Formation of protostellar jets as two-component outflows from star-disk magnetospheres
- Two-component jet simulations: I. Topological stability of analytical MHD outflow solutions
- Astrophysical Explosions Driven by a Rotating, Magnetized, Gravitating Sphere
- Shaping Planetary Nebulae by Light Jets
- MHD simulations of radiative jets from young stellar objects: Halpha emission
- Collimated Fast Wind in the Pre-Planetary Nebula CRL 618
- X-Ray Emission from Jet-Wind Interaction in Planetary Nebulae
- Two-flow magnetohydrodynamical jets around young stellar objects
Cited by in corpus (16)
- The jet feedback mechanism (jfm) in stars, galaxies and clusters
- Magnetic fields around evolved stars: further observations of HO maser polarization
- Models of the Mass-Ejection Histories of pre Planetary Nebulae, IV. Magnetized Winds and the Origins of Jets, Bullets, and FLIERs
- Space Velocity and Time Span of Jets in Planetary Nebulae
- Impulsive Ejection of Gas In Bipolar Planetary Nebulae
- Forming H-shaped and barrel-shaped nebulae with interacting jets
- Experimental demonstration of an inertial collimation mechanism in nested outflows
- Rotten Egg Nebula: The magnetic field of a binary evolved star
- Models of the Mass-Ejection Histories of pre Planetary Nebulae, III. The Shaping of Lobes by post-AGB Winds
- Multipolar Planetary Nebulae: Not as Geometrically Diversified as Thought
- The formation of `columns crowns' by jets interacting with a circumstellar dense shell
- Bipolar rings from jet-inflated bubbles around evolved binary stars
- Shaping `Ears' in planetary nebulae by early jets
- Variable jets at the termination of the common envelope evolution
- Morphological study of the nested planetary nebula Hubble 12
- Numerical simulations of wind-driven protoplanetary nebulae. II. signatures of atomic emission