Double flows anchored in a Kerr black hole horizon. I. Meridionally self-similar MHD models with loading terms
arXiv:2207.06094 · doi:10.1093/mnras/stac1990
Abstract
Recent observations of supermassive black holes have brought us new information on their magnetospheres. In this study we attempt a theoretical modelling of the coupling of black holes with their jets and discs, via three innovations. First, we propose a semi-analytical MHD description of a steady relativistic inflow-outflow structure characteristic to the extraction of the hole rotational energy. The mass-loading is ensured in a thin layer, the stagnation surface, by a two-photon pair production originating to a gamma-ray emission from the surrounding disc. The double flow is described near the polar axis by an axisymmetric meridionally self-similar MHD model. Second, the inflow and outflow solutions are crossing the MHD critical points and are matched at the stagnation surface. Knowledge of the MHD field on the horizon give us the angular momentum and energy extracted from the black hole. Finally, we illustrate the model with three specific examples of double-flow solutions by varying the energetic interaction between the MHD field and the rotating black hole. When the isorotation frequency is half of the black hole one, the extracted Poynting flux is comparable to the one obtained using the force-free assumption. In two of the presented solutions, the Penrose process dominates at large colatitudes, while the third is Poynting flux dominated at mid colatitudes. Mass injection rate estimations, from disk luminosity and inner radius, give an upper limit just above the values obtained for two solutions. This model is pertinent to describe the flows near the polar axis where pair production is more efficient.
22 page
References in corpus (19)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- First M87 Event Horizon Telescope Results. VIII. Magnetic Field Structure near The Event Horizon
- Variable TeV emission as a manifestation of jet formation in M87?
- "Meissner effect" and Blandford-Znajek mechanism in conductive black hole magnetospheres
- Disk-Jet Coupling in Black Hole Accretion Systems II: Force-Free Electrodynamical Models
- Black Hole Magnetospheres
- Synthetic gamma-ray lightcurves of Kerr black-hole magnetospheric activity from particle-in-cell simulations
- Relativistic electrons and magnetic field of the M87 jet on ~ten Schwarzschild radii scale
- Steady General Relativistic Magnetohydrodynamic Inflow/Outflow Solution along Large-Scale Magnetic Fields that Thread a Rotating Black Hole
- Existence of steady gap solutions in rotating black hole magnetospheres
- Magnetohydrodynamics in stationary and axisymmetric spacetimes: a fully covariant approach
- Lepton acceleration in the vicinity of the event horizon: High-energy and Very-high-energy emissions from rotating black holes with various masses
- Jet formation in GRBs: A semi-analytic model of MHD flow in Kerr geometry with realistic plasma injection
- Making Faranoff-Riley I radio sources II. The effects of jet magnetization
- A new method for extending solutions to the self-similar relativistic magnetohydrodynamics equations for black hole outflows
- Radiation GRMHD simulations of M87: funnel properties and prospects for gap acceleration
- Causal extraction of black hole rotational energy by various kinds of electromagnetic fields
- Toward a Full MHD Jet Model of Spinning Black Holes--II: Kinematics and Application to the M87 Jet
- Magnetic collimation of meridional-self-similar general relativistic MHD flows