A Cosmic Battery Reconsidered
arXiv:astro-ph/0207476 · doi:10.1086/342876
Abstract
We revisit the problem of magnetic field generation in accretion flows onto black holes owing to the excess radiation force on electrons. This excess force may arise from the Poynting-Robertson effect. Instead of a recent claim of the generation of dynamically important magnetic fields, we establish the validity of earlier results from 1977 which show only small magnetic fields are generated. The radiative force causes the magnetic field to initially grow linearly with time. However, this linear growth holds for only a {\it restricted} time interval which is of the order of the accretion time of the matter. The large magnetic fields recently found result from the fact that the linear growth is unrestricted. A model of the Poynting-Robertson magnetic field generation close to the horizon of a Schwarzschild black hole is solved exactly using General Relativity, and the field is also found to be dynamically insignificant. These weak magnetic fields may however be important as seed fields for dynamos.
Astrophysical Journal (accepted)
References in corpus (1)
Cited by in corpus (14)
- General Relativistic Magnetohydrodynamic Simulations of Magnetically Choked Accretion Flows around Black Holes
- Influence of a plasma on the shadow of a spherically symmetric black hole
- Black Hole Magnetic Fields and Their Imprint on Circular Polarization Images
- The Cosmic Battery Revisited
- Generation of Seed Magnetic Field around First Stars:Effects of Radiation Force
- The Cosmic Battery in Astrophysical Accretion Disks
- Generating vorticity and magnetic fields in plasmas in general relativity: spacetime curvature drive
- Simulations of the Poynting--Robertson Cosmic Battery in Resistive Accretion Disks
- Accretion disk radiation dynamics and the cosmic battery
- Numerical simulations of the Cosmic Battery in accretion flows around astrophysical black holes
- On the interpretation of the apparent existence of a preferred magnetic polarity in extragalactic jet sources
- The iron lines as a tool for magnetic field estimations in non-flat accretion flows
- Algorithms and radiation dynamics for the vicinity of black holes I. Methods and codes
- Radiative transfer dynamo effect