The Effect of External Winds on Relativistic Jets
arXiv:astro-ph/0209593 · doi:10.1086/345093
Abstract
Relativistic jets in Galactic superluminals and extragalactic AGN may be surrounded by a wind near to the central engine. Theoretical analysis and numerical simulation reveal considerable stabilization of relativistic jet flow by a wind to helical and higher order asymmetric modes of jet distortion. When velocities are measured in the source (inlet) frame, reduction in the absolute velocity difference between jet and wind, , provides stabilization in addition to stabilization provided by a high jet Lorentz factor, but a high Lorentz factor wind is not needed to stabilize a high Lorentz factor jet. However, the fundamental pinch mode is not similarly affected and knots with spacing a few times the jet radius are anticipated to develop in such flows. Thus, we identify a mechanism that can suppress large scale asymmetric structures while allowing axisymmetric structures to develop. Relativistic jets surrounded by outflowing winds will be more stable than if surrounded by a stationary or backflowing external medium. Knotty structures along a straight jet like that in 3C 175 could be triggered by pinching of an initially low Mach number jet surrounded by a suitable wind. As the jet enters the radio lobe, suppression of any surrounding outflow or backflow associated with the high pressure lobe triggers exponential growth of helical twisting.
10 pages containing 7 figures
References in corpus (4)
- Jet stability and the generation of superluminal and stationary components
- 3D Hydrodynamic Simulations of Relativistic Extragalactic Jets
- Relativistic Jet Response to Precession and Wave-Wave Interactions
- Dynamics and Structure of Three-Dimensional Trans-Alfvenic Jets. II. The Effect of Density and Winds
Cited by in corpus (26)
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Hadronic gamma-ray emission from windy microquasars
- Understanding the Very High-Energy Emission from Microquasars
- 3D Relativistic Magnetohydrodynamic Simulations of Magnetized Spine-Sheath Relativistic Jets
- Causality and stability of cosmic jets
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- Nonlinear stability of relativistic sheared planar jets
- Stability Properties of Strongly Magnetized Spine Sheath Relativistic Jets
- The Evolution of Radio Loud Active Galactic Nuclei as a Function of Black Hole Spin
- An Introduction to Particle Acceleration in Shearing Flows
- Jet collimation in NGC 315 and other nearby AGN
- The role of Kelvin-Helmholtz instability in the internal structure of relativistic outflows. The case of the jet in 3C 273
- Modeling the 3C 120 Radio Jet from 1 to 30 Milliarcseconds
- Catching the radio flare in CTA 102: II. VLBI kinematic analysis
- On the interaction of microquasar jets with stellar winds
- Hydrodynamic Collimation of Relativistic Outflows: Semianalytic Solutions and Application to Gamma-Ray Bursts
- Modeling Helical Structures in Relativistic Jets
- Using Twisted Filaments to Model the Inner Jet in M87
- GRMHD/RMHD Simulations and Stability of Magnetized Spine-Sheath Relativistic Jets
- Three Dimensional Structure of Relativistic Jet Formation
- Linear Theory of the Rayleigh-Taylor Instability at a Discontinuous Surface of a Relativistic Flow
- Rayleigh-Taylor Instability in Two-Component Relativistic Jets
- Jet stability, dynamics and energy transport
- The jet-disc connection: evidence for a reinterpretation in radio loud and radio quiet active galactic nuclei
- Classical and relativistic conservation of momentum flux in radio-galaxies
- Dissipative processes and their role in the evolution of radio galaxies