Development of General Relativistic Magnetohydrodynamic Code and its Application to Central Engine of Long Gamma-Ray Bursts
arXiv:0902.1908 · doi:10.1088/0004-637X/704/2/937
Abstract
In order to investigate formation of relativistic jets at the center of a progenitor of a long gamma-ray burst (GRB), we develop a two-dimensional general relativistic magnetohydrodynamic (GRMHD) code. We show the code passes many, well-known test calculations, by which the reliability of the code is confirmed. Then we perform a numerical simulation of a collapsar using a realistic progenitor model. It is shown that a jet is launched from the center of the progenitor. We also find that the mass accretion rate after the launch of the jet shows rapid time variability that resembles to a typical time profile of a GRB. The structure of the jet is similar to the previous study: a poynting flux jet is surrounded by a funnel-wall jet. Even at the final stage of the simulation, bulk Lorentz factor of the jet is still low, and total energy of the jet is still as small as 10^48 erg. However, we find that the energy flux per unit rest-mass flux is as high as 10^2 at the bottom of the jet. Thus we conclude that the bulk Lorentz factor of the jet can be potentially high when it propagates outward. It is shown that the outgoing poynting flux exists at the horizon around the polar region, which proves that the Blandford-Znajek mechanism is working. However, we conclude that the jet is launched mainly by the magnetic field amplified by the gravitational collapse and differential rotation around the black hole, rather than the Blandford-Znajek mechanism.
14 pages, 17 figures, Submitted to The Astrophysical Journal, High resolution version is available at http://www2.yukawa.kyoto-u.ac.jp/~nagataki/GRMHD.pdf
References in corpus (13)
- The Supernova -- Gamma-Ray Burst Connection
- Semi-global simulations of the magneto-rotational instability in core collapse supernovae
- Magnetorotational collapse of massive stellar cores to neutron stars: Simulations in full general relativity
- Special Relativistic Simulations of Magnetically-dominated Jets in Collapsing Massive Stars
- WHAM: A WENO-based general relativistic numerical scheme I: Hydrodynamics
- Aspherical Properties of Hydrodynamics and Nucleosynthesis in Jet-induced Supernovae
- Angular Energy Distribution of Collapsar-Jets
- A New Paradigm for Gamma Ray Bursts: Long Term Accretion Rate Modulation by an External Accretion Disk
- Magnetohydrodynamics of Neutrino-Cooled Accretion Tori around a Rotating Black Hole in General Relativity
- Self-Similar Force-Free Wind From an Accretion Disk
- Higher Order Terms of Kerr Parameter for Blandford-Znajek Monopole Solution
- Hyperaccreting Neutron-Star Disks and Neutrino Annihilation
- A Formation Mechanism of Collapsar Black Hole -- early evolution phase