Towards an understanding of the force-free magnetosphere of rapidly spinning black holes
arXiv:1409.0345 · doi:10.1103/PhysRevD.90.124009
Abstract
The ability of a plasma surrounding spinning black holes to extract rotational energy and power energetic emissions has been recognized as a key astrophysical phenomenon. Important insights into the nature of this process are obtained through the analysis of the interplay between a force-free magnetosphere and the black hole. This task involves solving a complicated system of equations, often requiring complex numerical simulations. Recent analytical attempts at tackling this problem have exploited the fact that the near horizon region of extreme Kerr (NHEK) is endowed with an enhanced symmetry group. We continue in this direction and show that for some conformally self-similar solutions, the NHEK force-free equations reduce to a single non-linear ordinary differential equation which is difficult to solve with straightforward integration. We here introduce a new approach specifically tailored to this problem and describe how one can obtain physically meaningful solutions.
13 pages, 7 figures
References in corpus (12)
- Quasinormal-mode spectrum of Kerr black holes and its geometric interpretation
- Three-dimensional numerical simulations of the pulsar magentoshere: Preliminary results
- "Meissner effect" and Blandford-Znajek mechanism in conductive black hole magnetospheres
- Cargese Lectures on the Kerr/CFT Correspondence
- General Relativistic Force-Free Electrodynamics: A New Code and Applications to Black Hole Magnetospheres
- Branching of quasinormal modes for nearly extremal Kerr black holes
- Accurate Simulations of Binary Black-Hole Mergers in Force-Free Electrodynamics
- Black Hole Magnetospheres
- Gravity Waves from Extreme-Mass-Ratio Plunges into Kerr Black Holes
- Electromagnetic power of merging and collapsing compact objects
- The Black Hole Meissner Effect and Blandford-Znajek Jets
- Force-free magnetosphere of an aligned rotator with differential rotation of open magnetic field lines
Cited by in corpus (20)
- Black Hole Pulsar
- Particle motion near high-spin black holes
- Transient Instability of Rapidly Rotating Black Holes
- Near-horizon Kerr Magnetosphere
- Electromagnetic Jets from Stars and Black Holes
- Blandford--Znajek monopole expansion revisited: novel non-analytic contributions to the power emission
- Horizon instability of extremal Reissner-Nordström black holes to charged perturbations
- Self-similar accretion in thin disks around near-extremal black holes
- Magnetosphere of a Kerr black hole immersed in magnetized plasma and its perturbative mode structure
- Near-horizon Extreme Kerr Magnetospheres
- Force-Free Foliations
- Force-free Currents and the Newman-Penrose Tetrad of a Kerr Black Hole: Exact Local Solutions
- Stability of exact force-free electrodynamic solutions and scattering from spacetime curvature
- Moving away from the Near-Horizon Attractor of the Extreme Kerr Force-Free Magnetosphere
- Plasma-wave generation in a dynamic spacetime
- Crystals of gauged solitons, force free plasma and resurgence
- Expanded solutions of force-free electrodynamics on general Kerr black holes
- Outgoing electromagnetic flux from rotating wormholes
- Signatures of Extra Dimensions in Black Hole Jets
- Electro-Magnetic Energy Extraction from Rotating Black Holes in AdS