Magnetic acceleration of ultra-relativistic jets in gamma-ray burst sources
arXiv:0811.1467 · doi:10.1111/j.1365-2966.2009.14410.x
Abstract
We present a relativistic-MHD numerical study of axisymmetric, magnetically driven jets with parameters applicable to gamma-ray burst (GRB) flows. We also present analytic expressions for the asymptotic jet shape and other flow parameters that agree very well with the numerical results. All current-carrying outflows exhibit self-collimation and consequent acceleration near the rotation axis, but unconfined outflows lose causal connectivity across the jet and therefore do not collimate or accelerate efficiently in their outer regions. Magnetically accelerated jets confined by an external pressure that varies with distance with a power-law index < 2 assume a paraboloidal shape and have an acceleration efficiency > 50%. They attain Lorentz factors > 30 on scales 10^9-3x10^10 cm, consistent with the possibility that short/hard GRB jets are accelerated on scales where they can be confined by moderately relativistic winds from accretion discs, and > 100 on scales 10^10-10^12 cm, consistent with the possibility that long/soft GRB jets are accelerated within the envelopes of collapsing massive stars. We also find that the Lorentz factor of a magnetically accelerated jet is approximately inversely proportional to the opening half-angle of the poloidal streamlines. This implies that the gamma-ray emitting components of GRB outflows are very narrow, with a half-angle < 1 degree in regions where the Lorentz factor exceeds 100, and that the afterglow light curves of these components would either exhibit a very early jet break or show no jet break at all.
submitted to MNRAS, 32 pages, 23 figures
References in corpus (15)
- The Supernova -- Gamma-Ray Burst Connection
- Magnetic acceleration of relativistic AGN jets
- A Comprehensive Analysis of Swift/XRT Data: III. Jet Break Candidates in X-ray and Optical Afterglow Lightcurves
- The role of kink instability in Poynting-flux dominated jets
- On the Mechanism of Gamma-Ray Burst Afterglows
- Can the early X-ray afterglow of GRBs be explained by a contribution from the reverse shock?
- Relativistic Jets and Long-Duration Gamma-ray Bursts from the Birth of Magnetars
- Stellar explosions powered by the Blandford-Znajek mechanism
- The Onset of Gamma-Ray Burst Afterglow
- Self-Similar Force-Free Wind From an Accretion Disk
- Did Swift measure GRB prompt emission radii?
- Swift GRB Afterglows and the Forward-Shock Model
- General Relativistic, Neutrino-Assisted MHD winds - Theory and Application to GRBs. I. Schwarzschild Geometry
- Optical Observations of GRB 050401 Afterglow : A case for Double Jet Model
- Structure and Nuclear Composition of General Relativistic, Magnetohydrodynamic Outflows from Neutrino-Cooled Disks
Cited by in corpus (3)
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- 3D Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. I. Instability of a static column
- Development of General Relativistic Magnetohydrodynamic Code and its Application to Central Engine of Long Gamma-Ray Bursts