ar X iv : a st ro - p h / 03 10 23 0 v 2 1 7 O ct 2 00 3 Force - Free Magnetosphere of an Accretion Disk — Black Hole System
نویسنده
چکیده
In this paper I study the magnetosphere of a black hole that is connected by the magnetic field to a thin conducting Keplerian disk. I consider the case of a Schwarzschild black hole only, leaving the more interesting but difficult case of a Kerr black hole to a future study. I assume that the magnetosphere is ideal, stationary, axisymmetric, and force-free. I pay a special attention to the two singular surfaces present in the system, i.e., the event horizon and the inner light cylinder; I use the regularity condition at the light cylinder to determine the poloidal electric current as a function of poloidal magnetic flux. I solve numerically the Grad–Shafranov equation, which governs the structure of the magnetosphere, for two cases: the case of a nonrotating disk and the case of a Keplerian disk. I find that, in both cases, the poloidal flux function on the horizon matches a simple analytical expression corresponding to a radial magnetic field that is uniform on the horizon. Using this result, I express the poloidal current as an explicit function of the flux and find a perfect agreement between this analytical expression and my numerical results. Subject headings: black hole physics — MHD — accretion, accretion disks — magnetic fields — galaxies: active KITP preprint NSF-KITP-03-85
منابع مشابه
0 v 1 8 O ct 2 00 3 Force - Free Magnetosphere of an Accretion Disk — Black Hole System
In this paper I study the magnetosphere of a black hole that is connected by the magnetic field to a thin conducting Keplerian disk. I consider the case of a Schwarzschild black hole only, leaving the more interesting but difficult case of a Kerr black hole to a future study. I assume that the magnetosphere is ideal, stationary, axisymmetric, and force-free. I pay a special attention to the two...
متن کاملar X iv : a st ro - p h / 01 03 43 8 v 1 2 7 M ar 2 00 1 X - rays and accretion discs as probes of the strong gravity of black holes
The observations and interpretation of broad iron lines in the X-ray spectra of Seyfert 1 galaxies are reviewed. The line profiles observed from MCG–6-30-15 and NGC 3516 show extended red wings to the line explained by large gravitational red-shifts. The results are consistent with the emission expected from an X-ray irradiated flat accretion disc orbiting very close to a black hole. Results fr...
متن کاملar X iv : a st ro - p h / 05 11 52 0 v 1 1 7 N ov 2 00 5 A Possible Rossby Wave Instability Origin for the Flares in
In recent years, near-IR and X-ray flares have been detected from the Galaxy’s central radio point source, Sagittarius A* (Sgr A*), believed to be a ∼ 3 × 10 M⊙ supermassive black hole. In some cases, the transient emission appears to be modulated with a (quasi-)periodic oscillation (QPO) of ∼ 17 − 20 minutes. The implied ∼ 3 rS size of the emitter (where rS ≡ 2GM/c 2 is the Schwarzschild radiu...
متن کاملar X iv : a st ro - p h / 03 08 42 1 v 2 9 O ct 2 00 3 Dynamics of Relativistic Flows
Dynamics of relativistic outflows along the rotation axis of a Kerr black hole is investigated using a simple model and the evolution of the speed of the flow relative to the ambient medium is studied. We assume that a flow clump is under the influence of the relativistic tidal force of the central source as well as the Lorentz force due to the large-scale electromagnetic field that is assumed ...
متن کاملar X iv : a st ro - p h / 03 08 42 1 v 3 7 M ay 2 00 4 Dynamics of Relativistic Flows
Dynamics of relativistic outflows along the rotation axis of a Kerr black hole is investigated using a simple model that takes into account the relativistic tidal force of the central source as well as the Lorentz force due to the large-scale electromagnetic field which is assumed to be present in the ambient medium. The evolution of the speed of the flow relative to the ambient medium is studi...
متن کامل