Screw instability in black hole magnetospheres and a stabilizing effect of field-line rotation
arXiv:astro-ph/0108511 · doi:10.1103/PhysRevD.64.123003
Abstract
The screw instability of magnetic field is a mechanism for prohibiting a generation of strongly twisted field lines in large scales. If it can work in black hole magnetospheres, the global axisymmetric structure and the main process of energy release will be significantly influenced. In this paper, we study the instability condition in the framework of the variational principle, paying special attention to a stabilizing effect due to field-line rotation against the screw-unstable modes satisfying the well-known Kruskal-Shafranov criterion. The basic formulation for the stability analysis of rotating force-free fields in Kerr geometry is provided. Then, for the practical use of the analytical method, the stationary configuration is assumed to be cylindrical, and we treat the long-wave mode perturbations excited at large distances from the central black hole, where the strength of gravity becomes negligibly small. This allows us to derive clearly the new criterion dependent on the rotational angular velocity of magnetic field lines, and the implications of the results obtained for magnetic activities of jets driven by a black hole are briefly discussed.
9 pages, submitted to PRD
Cited by in corpus (48)
- General Relativistic Magnetohydrodynamic Simulations of Jet Formation and Large-Scale Propagation from Black Hole Accretion Systems
- Stability of Relativistic Jets from Rotating, Accreting Black Holes via Fully Three-Dimensional Magnetohydrodynamic Simulations
- Simulations of Ultrarelativistic Magnetodynamic Jets from Gamma-ray Burst Engines
- Polarization and structure of relativistic parsec-scale AGN jets
- Magnetically Arrested Disks and Origin of Poynting Jets: Numerical Study
- Magnetized Relativistic Jets and Long-Duration GRBs from Magnetar Spindown during Core-Collapse Supernovae
- General Relativistic Force-Free Electrodynamics: A New Code and Applications to Black Hole Magnetospheres
- Poynting Flux Dominated Jets in Decreasing Density Atmospheres. I. The Non-relativistic Current-driven Kink Instability and the Formation of "Wiggled" Structures
- Magnetorotational Explosion of A Massive Star Supported by Neutrino Heating in General Relativistic Three Dimensional Simulations
- 3D Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. I. Instability of a static column
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability. III. Rotating Relativistic Jets
- Stellar Explosions by Magnetic Towers
- Disk-Jet Coupling in Black Hole Accretion Systems II: Force-Free Electrodynamical Models
- Stability of Relativistic Force-Free Jets
- Magnetar-Driven Magnetic Tower as a Model for Gamma-Ray Bursts and Asymmetric Supernovae
- Stability Properties of Magnetic Tower Jets
- Spatial growth of current-driven instability in relativistic rotating jets and the search for magnetic reconnection
- Linear stability analysis of magnetized relativistic jets: the nonrotating case
- Local Simulations of Instabilities in Relativistic Jets I: Morphology and Energetics of the Current-Driven Instability
- Three-Dimensional Relativistic Magnetohydrodynamic Simulations of Current-Driven Instability with A Sub-Alfvenic Jet: Temporal Properties
- Analytical Solution of Magnetically Dominated Astrophysical Jets and Winds: Jet Launching, Acceleration, and Collimation
- Magnetically-dominated jets inside collapsing stars as a model for gamma-ray bursts and supernova explosions
- Linear stability analysis of magnetized relativistic rotating jets
- Modeling the inner part of the jet in M87: Confronting jet morphology with theory
- Three Dimensional Structure of Relativistic Jet Formation
- The effect of poloidal velocity shear on the local development of current-driven instabilities
- Relativistic Acceleration of Magnetically Driven Jets
- Gamma-ray Bursts Induced by Turbulent Reconnection
- Properties of Trans-fast Magnetosonic Jets in Black Hole Magnetospheres
- Linear stability analysis of magnetized jets: the rotating case
- Relativistic MHD Simulations of Poynting Flux-Driven Jets
- Fourth-order split monopole perturbation solutions to the Blandford-Znajek mechanism
- Screw instability of the magnetic field connecting a rotating black hole with its surrounding disk
- Internal instabilities in magnetized jets
- On the Linear Stability of Magnetized Jets Without Current Sheets - Relativistic Case
- On Detection of Black Hole Quasi-Normal Ringdowns: Detection Efficiency and Waveform Parameter Determination in Matched Filtering
- On the Linear Stability of Magnetized Jets Without Current Sheets: Non-Relativistic Case
- Analytic properties of force-free jets in the Kerr spacetime -- III: uniform field solution
- Stability of exact force-free electrodynamic solutions and scattering from spacetime curvature
- Kink Instability of Force-Free Jets: a Parameter Space Study
- On the Linear Stability of Sheared and Magnetized Jets Without Current Sheets - Non-Relativistic Case
- Kinetic Simulations of Instabilities and Particle Acceleration in Cylindrical Magnetized Relativistic Jets
- Ideal magnetohydrodynamic simulation of magnetic bubble expansion as a model for extragalactic radio lobes
- A model of rotating hotspots for 3:2 frequency ratio of HFQPOs in black hole X-ray binaries
- Expanded solutions of force-free electrodynamics on general Kerr black holes
- Relativistic jet acceleration region in a black hole magnetosphere
- A Toy Model for Magnetic Extraction of Energy from Black Hole Accretion Disc
- Dissipative processes and their role in the evolution of radio galaxies