The structure of black hole magnetospheres. I. Schwarzschild black holes
arXiv:astro-ph/9907427 · doi:10.1046/j.1365-8711.2000.03410.x
Abstract
We introduce a multipolar scheme for describing the structure of stationary, axisymmetric, force-free black-hole magnetospheres in the ``3+1'' formalism. We focus here on Schwarzschild spacetime, giving a complete classification of the separable solutions of the stream equation. We show a transparent term-by-term analogy of our solutions with the familiar multipoles of flat-space electrodynamics. We discuss electrodynamic processes around disk-fed black holes in which our solutions find natural applications: (a) ``interior'' solutions in studies of the Blandford-Znajek process of extracting the hole's rotational energy, and of the formation of relativistic jets in active galactic nuclei and ``microquasars'', and, (b) ``exterior'' solutions in studies of accretion disk dynamos, disk-driven winds and jets. On the strength of existing numerical studies, we argue that the poloidal field structures found here are also expected to hold with good accuracy for rotating black holes, except for maximum possible rotation rates. We show that the closed-loop exterior solutions found here are not in contradiction with the Macdonald-Thorne theorem, since these solutions, which diverge logarithmically on the hole's horizon , apply only to those regions which exclude .
6 figures. Accepted for publication by MNRAS
Cited by in corpus (25)
- Magnetically Driven Accretion Flows in the Kerr Metric II: Structure of the Magnetic Field
- Synchrotron radiation of self-collimating relativistic MHD jets
- Chaotic motion of Charged Particles in an Electromagnetic Field Surrounding a Rotating Black Hole
- Black Hole Pulsar
- Force-Free Magnetosphere of an Accretion Disk -- Black Hole System. I. Schwarzschild Geometry
- Ultra-Relativistic Magneto-Hydro-Dynamic Jets in the context of Gamma Ray Bursts
- Electromagnetic Jets from Stars and Black Holes
- An HLLC Riemann Solver for Resistive Relativistic Magnetohydrodynamics
- Numerically solving the relativistic Grad-Shafranov equation in Kerr spacetimes: Numerical techniques
- Black Hole Magnetospheres Around Thin Disks Driving Inward and Outward Winds
- Magnetocentrifugal launching of jets from disks around Kerr black holes
- Electric Charge and Magnetic Flux on Rotating Black Holes in a Force-Free Magnetosphere
- Relativistic outflows from a GRMHD mean-field disk dynamo
- Magnetic Energy Buildup for Relativistic Magnetar Giant Flares
- Blandford-Znajek jets in MOdified Gravity
- Constraints on the Evolution of Black Hole Spin due to Magnetohydrodynamic Accretion
- The orthogonal gamma-ray burst model
- Electrostatic boundary value problems in the Schwarzschild background
- Expanded solutions of force-free electrodynamics on general Kerr black holes
- Non-linear Electrodynamics in Blandford-Znajeck Energy Extraction
- Two Dimensional Poynting Flux Dominated Flow onto a Schwarzschild Black Hole
- Toy model for a two-dimensional accretion disk dominated by Poynting flux
- Chaos of charged particles in quadrupole magnetic fields under Schwarzschild backgrounds
- Cold Plasma Wave Analysis in Magneto-Rotational Fluids
- Resistive Accretion Flows around a Kerr Black Hole