Magnetic Reconnection as a Mechanism for Energy Extraction from Rotating Black Holes
arXiv:2012.00879 · doi:10.1103/PhysRevD.103.023014
Abstract
Spinning black holes store rotational energy that can be extracted. When a black hole is immersed in an externally supplied magnetic field, reconnection of magnetic field lines within the ergosphere can generate negative energy (relative to infinity) particles that fall into the black hole event horizon while other particles escape stealing energy from the black hole. We show analytically that energy extraction via magnetic reconnection is possible when the black hole spin is high (dimensionless spin ) and the plasma is strongly magnetized (plasma magnetization ). The parameter space region where energy extraction is allowed depends on the plasma magnetization and the orientation of the reconnecting magnetic field lines. For , the asymptotic negative energy at infinity per enthalpy of the decelerated plasma that is swallowed by a maximally rotating black hole is found to be . The accelerated plasma that escapes to infinity and takes away black hole energy asymptotes the energy at infinity per enthalpy . We show that the maximum power extracted from the black hole by the escaping plasma is (here, is the black hole mass and is the plasma enthalpy density) for the collisionless plasma regime and one order of magnitude lower for the collisional regime. Energy extraction causes a significant spindown of the black hole when . The maximum efficiency of the plasma energization process via magnetic reconnection in the ergosphere is found to be . Since fast magnetic reconnection in the ergosphere should occur intermittently in the scenario proposed here, the associated emission within a few gravitational radii from the black hole is expected to display a bursty nature.
References in corpus (15)
- First M87 Event Horizon Telescope Results. V. Physical Origin of the Asymmetric Ring
- Why does steady-state magnetic reconnection have a maximum local rate of order 0.1?
- General Theory of the Plasmoid Instability
- "Meissner effect" and Blandford-Znajek mechanism in conductive black hole magnetospheres
- Sgr A* near-infrared flares from reconnection events in a magnetically arrested disc
- Time Dependent Models of Flares from Sagittarius A*
- Plasmoid Instability in Forming Current Sheets
- On the Value of the Reconnection Rate
- Recent Progress on Particle Acceleration and Reconnection Physics during Magnetic Reconnectionin the Magnetically-dominated Relativistic Regime
- A 600 minute near-infrared lightcurve of Sagittarius A*
- Energy Extraction from a Rotating Black Hole by Magnetic Reconnection in Ergosphere
- Effects of spin on magnetized binary neutron star mergers and jet launching
- Extended theory of the Taylor problem in the plasmoid-unstable regime
- Relativistic Magnetic Reconnection in Kerr Spacetime
- Gravitational electromotive force in magnetic reconnection around Schwarzschild black holes
Cited by in corpus (35)
- Magnetic Hair and Reconnection in Black Hole Magnetospheres
- Magnetic Reconnection and Energy Extraction from a Spinning Black Hole with Broken Lorentz Symmetry
- Energy Extraction via Magnetic Reconnection in Lorentz breaking Kerr-Sen and Kiselev Black Holes
- Reconnection-driven flares in 3D black hole magnetospheres -- A scenario for hot spots around Sagittarius A*
- Relativistic Magnetic Reconnection in Astrophysical Plasmas: A Powerful Mechanism of Nonthermal Emission
- Effects of tidal charge on magnetic reconnection and energy extraction from spinning braneworld black hole
- Extracting energy via magnetic reconnection from Kerr-de Sitter black holes
- Energy Extraction via Magnetic Reconnection in the Ergosphere of a rotating non-Kerr Black Hole
- Superradiance and Stability of Kerr Black Hole Enclosed by Anisotropic Fluid Matter
- Lifetime of scalar cloud formation around a rotating regular black hole
- Harvesting energy driven by Comisso-Asenjo process from Kerr-MOG black holes
- Energy extraction via Comisso-Asenjo mechanism from rotating hairy black hole
- Energy Extraction via Magnetic Reconnection in Konoplya-Rezzolla-Zhidenko Parametrized Black Holes
- Superradiant energy extraction from rotating hairy Horndeski black holes
- Energy extraction from rotating regular black hole via Comisso-Asenjo mechanism
- Energy extraction via magnetic reconnection in magnetized black holes
- The amplification of cosmological magnetic fields in Extended Teleparallel Gravity
- Electromagnetic Energy Extraction from Kerr Black Holes: Ab-Initio Calculations
- Self-consistent multidimensional Penrose process driven by magnetic reconnection
- Magnetic reconnection under centrifugal and gravitational electromotive forces
- Energy extraction through magnetic reconnection from a Kerr-Newman black hole in perfect fluid dark matter
- Scalar Perturbation Around Rotating Regular Black Hole: Superradiance Instability and Quasinormal Modes
- Astrophysical insights into magnetic Penrose process around parameterized Konoplya-Rezzolla-Zhidenko black hole
- Electromagnetic signatures of strong-field gravity from accreting black holes
- Superradiance of rotating black holes surrounded by dark matter
- Confined Penrose process and black-hole bomb
- Non-linear Electrodynamics in Blandford-Znajeck Energy Extraction
- Hamiltonian formulation of X-point collapse in an extended magnetohydrodynamics framework
- Unveiling the electrodynamic nature of spacetime collisions
- Penrose process in magnetized non-Kerr rotating spacetime with anomalous quadrupole moment
- Scattering on Quasi-Spherical Black-Holes: Features and Beyond
- Repetitive Penrose process in Konoplya-Zhidenko rotating non-Kerr black holes
- Universality of the Blandford-Znajek emission in stationary and axisymmetric spacetimes
- Possible Sources of Iron Nuclei in Ultra-High-Energy Cosmic Rays
- FPIC: a new Particle-In-Cell code for stationary and axisymmetric black-hole spacetimes