Propagation of Relativistic, Hydrodynamic, Intermittent Jets in a Rotating, Collapsing GRB Progenitor Star
arXiv:1608.01715 · doi:10.3847/1538-4357/833/1/116
Abstract
The prompt emission of gamma-ray bursts (GRBs) is characterized by rapid variabilities, which may be a direct reflection of the unsteady central engine. We perform a series of axisymmetric 2.5-dimensional simulations to study the propagation of relativistic, hydrodynamic, intermittent jets through the envelope of a GRB progenitor star. A realistic rapidly rotating star is incorporated as the background of jet propagation, and the star is allowed to collapse due to the gravity of the central black hole. By modeling the intermittent jets with constant-luminosity pulses with equal on and off durations, we investigate how the half-period, , affects the jet dynamics. For relatively small values (e.g. 0.2 s), the jet breakout time depends on the opening angle of the jet, with narrower jets more penetrating and reaching the surface at shorter times. For s, the reverse shock crosses each pulse before the jet penetrates through the stellar envelope. As a result, after the breakout of the first group of pulses at , several subsequent pulses vanish before penetrating the star, causing a quiescent gap. For larger half-periods ( s), all the pulses can successfully penetrate through the envelope, since each pulse can propagate through the star before the reverse shock crosses the shell. Our results may interpret the existence of a weak precursor in many long GRBs, given that the GRB central engine injects intermittent pulses with half-period s. The observational data seem to be consistent with such a possibility.
19 pages, 15 figures, ApJ accepted
References in corpus (23)
- The Supernova -- Gamma-Ray Burst Connection
- PLUTO: a Numerical Code for Computational Astrophysics
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- A large scale dynamo and magnetoturbulence in rapidly rotating core-collapse supernovae
- Magnetorotational Core-Collapse Supernovae in Three Dimensions
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- A Comprehensive Analysis of Swift/XRT Data: III. Jet Break Candidates in X-ray and Optical Afterglow Lightcurves
- Neutrino-Dominated Accretion Models for Gamma-Ray Bursts: Effects of General Relativity and Neutrino Opacity
- Angular Energy Distribution of Collapsar-Jets
- Precursors in Swift Gamma Ray Bursts with redshift
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- Numerical Study on GRB-Jet Formation in Collapsars
- Development of General Relativistic Magnetohydrodynamic Code and its Application to Central Engine of Long Gamma-Ray Bursts
- Collimated Jet or Expanding Outflow: Possible Origins of GRBs and X-Ray Flashes
- Internal Energy Dissipation of Gamma-Ray Bursts Observed with Swift: Precursors, Prompt Gamma-rays, Extended emission and Late X-ray Flares
- Jet Luminosity of Gamma-ray Bursts: Blandford-Znajek Mechanism v.s. Neutrino Annihilation Process
- GRB Precursors in the Fallback Collapsar Scenario
- Relativistic MHD simulations of collision-induced magnetic dissipation in Poynting-flux-dominated jets/outflows
- Photospheric Emission from Collapsar Jets in 3D Relativistic Hydrodynamics
- Photospheric emission from long duration gamma-ray bursts powered by variable engines
- Three-dimensional simulations of long duration gamma-ray burst jets: time scales from variable engines
Cited by in corpus (8)
- Propagation of a Short GRB Jet in the Ejecta: Jet Launching Delay Time, Jet Structure, and GW170817/GRB 170817A
- Intermittent hydrodynamic jets in collapsars do not produce GRBs
- Extremely bright GRB 160625B with multi-episodes emission: Evidences for long-term ejecta evolution
- Gamma-ray burst afterglow blast waves
- Gravitationally Lensed Orphan Afterglows of Gamma-Ray Bursts
- GRB Timing: Decoding the Hidden Slow Jets in GRB 060729
- Long gamma-ray burst light curves as the result of a common stochastic pulse-avalanche process
- Evolution of jets driven by relativistic radiation hydrodynamics as Long and Low Luminosity GRBs