General Relativistic Force-Free Electrodynamics: A New Code and Applications to Black Hole Magnetospheres
arXiv:astro-ph/0601410 · doi:10.1111/j.1365-2966.2006.10087.x
Abstract
The force-free limit of magnetohydrodynamics (MHD) is often a reasonable approximation to model black hole and neutron star magnetospheres. We describe a general relativistic force-free (GRFFE) formulation that allows general relativistic magnetohydrodynamic (GRMHD) codes to directly evolve the GRFFE equations of motion. Established, accurate, and well-tested conservative GRMHD codes can simply add a new inversion piece of code to their existing code, while continuing to use all the already-developed facilities present in their GRMHD code. We show how to enforce the constraint and energy conservation, and we introduce a simplified general model of the dissipation of the electric field to enforce the constraint. We also introduce a simplified yet general method to resolve current sheets, without much reconnection, over many dynamical times. This formulation is incorporated into an existing GRMHD code (HARM), which is demonstrated to give accurate and robust GRFFE results for Minkowski and black hole space-times.
14 pages, 4 figures, accepted for publication in MNRAS Main Journal
Cited by in corpus (13)
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- ECHO: an Eulerian Conservative High Order scheme for general relativistic magnetohydrodynamics and magnetodynamics
- Three-Dimensional Simulations of Magnetized Thin Accretion Disks around Black Holes: Stress in the Plunging Region
- Multiwaveband Polarimetric Observations of 15 Active Galactic Nuclei at High Frequencies: Correlated Polarization Behavior
- WHAM: A WENO-based general relativistic numerical scheme I: Hydrodynamics
- Disk-Jet Coupling in Black Hole Accretion Systems I: General Relativistic Magnetohydrodynamical Models
- Multi-dimensional Numerical Scheme for Resistive Relativistic MHD
- "Meissner effect" and Blandford-Znajek mechanism in conductive black hole magnetospheres
- Disk-Jet Coupling in Black Hole Accretion Systems II: Force-Free Electrodynamical Models
- Development of General Relativistic Magnetohydrodynamic Code and its Application to Central Engine of Long Gamma-Ray Bursts
- Magnetar-Driven Magnetic Tower as a Model for Gamma-Ray Bursts and Asymmetric Supernovae
- Self-Similar Force-Free Wind From an Accretion Disk
- Long-Term Evolution of Slowly Rotating Collapsar in Special Relativistic Magnetohydrodynamics