Formation, Evolution, and the Structure of Fronts Produced By Unsteady Injection of Highly Magnetized, Relativistic Flows
arXiv:astro-ph/9706172 · doi:10.1086/304709
Abstract
We study the formation, evolution and structure of dissipative fronts produced by overtaking collisions of relativistic streams, with emphasis on strongly magnetized flows. The evolution of the system is followed using analytical approach in the simple wave regime and numerical simulations in the non-simple wave regime, until a steady-state is reached. The steady-state structure of the front is then examined by solving the appropriate jump conditions. The conversion of magnetic energy into kinetic energy is parametrized in terms of the Alfvén 4-velocity inside the front. The implications for gamma-ray jets are briefly discussed.
10 pages, LaTex, one figure (ps), to appear in ApJ
Cited by in corpus (19)
- A Reconnection Switch to Trigger Gamma-Ray Burst Jet Dissipation
- Reconnection-driven plasmoids in blazars: fast flares on a slow envelope
- The termination shock in a striped pulsar wind
- Implications of the Early X-Ray Afterglow Light Curves of Swift GRBs
- Gravitational radiation from gamma-ray bursts as observational opportunities for LIGO and VIRGO
- The collimation of magnetic jets by disk winds
- Gamma-ray burst internal shocks with magnetization
- High-Energy Aspects of Astrophysical Jets
- Global asymptotic solutions for relativistic MHD jets and winds
- Transient Emission From Dissipative Fronts in Magnetized, Relativistic Outflows. I. Gamma-Ray Flares
- Prospects for multi-messenger extended emission from core-collapse supernovae in the Local Universe
- The effect of Compton drag on the dynamics of dissipative Poynting dominated flows: Implications for the unification of radio loud AGN
- Extreme luminosities in ejecta produced by intermittent outflows around rotating black holes
- Uniqueness in MHD in divergence form: right nullvectors and well-posedness
- Scaling in global tidal dissipation of the Earth-Moon system
- Radiation from Comoving Poynting Flux Acceleration
- Transient Emission From Dissipative Fronts in Magnetized, Relativistic Outflows. II. Synchrotron Flares
- Particle acceleration and high-frequency (X-ray and -ray) emission in the jets of active galactic nuclei
- Emission Mechanisms of Fast Radio Bursts