Collimation and confinement of magnetic jets by external media
arXiv:1209.5261 · doi:10.1088/0004-637X/764/2/148
Abstract
We study the collimation of a highly magnetized jet by a surrounding cocoon that forms as a result of the interaction of the jet with the external medium. We show that in regions where the jet is well confined by the cocoon, current-driven instabilities should develop over timescales shorter than the expansion time of the jet's head. We speculate that these instabilities would give rise to complete magnetic field destruction, whereby the jet undergoes a transition from high-to-low sigma above the collimation zone. Using this assumption, we construct a self-consistent model for the evolution of the jet-cocoon system in an ambient medium of arbitrary density profile. We apply the model to jet breakout in long GRBs, and show that the jet is highly collimated inside the envelope of the progenitor star, and is likely to remain confined well after breakout. We speculate that this strong confinement may provide a channel for magnetic field conversion in GRB outflows, whereby the hot, low-sigma jet section thereby produced is the source of the photospheric emission observed in many bursts.
22 pages, 2 figs. Accepted by ApJ. Post referee version
References in corpus (11)
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
- Magnetic acceleration of relativistic AGN jets
- Very high efficiency photospheric emission in long duration gamma-ray bursts
- Spectral and timing properties of a dissipative GRB photosphere
- 3D Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. I. Instability of a static column
- Angular Energy Distribution of Collapsar-Jets
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. III. Rotating Relativistic Jets
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- Observational signatures of sub-photospheric radiation mediated shocks in the prompt phase of GRBs
- Magnetic Domination of Recollimation Boundary Layers in Relativistic Jets
Cited by in corpus (27)
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- Relativistic MHD simulations of core-collapse GRB jets: 3D instabilities and magnetic dissipation
- The Observable Signatures of GRB Cocoons
- Black hole to breakout: 3D GRMHD simulations of collapsar jets reveal a wide range of transients
- A hot cocoon in the ultralong GRB 130925A: hints of a PopIII-like progenitor in a low density wind environment
- Physics of radiation mediated shocks and its applications to GRBs, supernovae, and neutron star mergers
- Magnetic Flux of Progenitor Stars Sets Gamma-ray Burst Luminosity and Variability
- The dynamics of a highly magnetized jet propagating inside a star
- Monte-Carlo simulations of relativistic radiation mediated shocks: I. photon rich regime
- The collimation of magnetic jets by disk winds
- Constraints on the Bulk Lorentz Factors of GRB X-Ray Flares
- On the Composition of GRBs' Collapsar Jets
- Hot Electromagnetic Outflows. III. Displaced Fireball in a Strong Magnetic Field
- Near-extremal black holes as initial conditions of long GRB-supernovae and probes of their gravitational wave emission
- Sub-photospheric, radiation mediated shocks in GRBs: Multiple shock emission and the Band spectrum
- 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
- Smoke and Mirrors: Signal-to-Noise and Time-Reversed Structures in Gamma-Ray Burst Pulse Light Curves
- Gravitational-wave memory from a propagating relativistic jet: a probe of the interior of gamma-ray burst progenitors
- High-energy neutrino emission from magnetised jets of rapidly rotating protomagnetars
- Ambient magnetic field amplification in shock fronts of relativistic jets: an application to GRB afterglows
- Viscous boundary layers of radiation-dominated, relativistic jets. I. The two-stream model
- Cocoon shock breakout emission from binary neutron star mergers
- Magnetic collimation of meridional-self-similar general relativistic MHD flows
- Gamma-ray burst engines may have no memory
- Binary Neutron Star (BNS) merger: What we learned from relativistic ejecta of GW/GRB~170817A
- Three-dimensional GRMHD simulations of jet formation and propagation in self-gravitating collapsing stars