A magnetic field dynamo in the inner regions of the accretion disk surrounding the supermassive black holes in AGNs may be the mechanism for the generation of magnetic fields in galaxies and in extragalactic space. We argue that the two coherent motions produced by 1) the Keplerian motion and 2) star-disk collisions, numerous in the inner region of AGN accretion disks, are both basic to the formation of a robust, coherent dynamo and consequently the generation of large scale magnetic fields. They are frequent enough to account for an integrated dynamo gain, e^{10^{9}} at 100 gravitational radii of a central black hole, many orders of magnitude greater than required to amplify any seed field no matter how small. The existence of extra-galact...
We examine the behaviour of an axisymmetric galactic dynamo model with a radial accretion flow in th...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...
The magnetic field dynamo in the inner part of accretion disks around supermassive black holes in AG...
It is shown that a dynamo can operate in an Active Galactic Nuclei accretion disk due to the Kepleri...
It is shown that a dynamo can operate in an Active Galactic Nuclei (AGN) accretion disk due to the K...
We present a theory relating the central galactic black hole (BH) formation to the galactic dynamo t...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
A variety of observations suggest that magnetic fields are present in all galaxies and galaxy cluste...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
A new computational technique is developed that allows realistic calculations of dynamo magnetic fie...
Accretion disks are believed to be present in active galactic nuclei, binary X-ray sources, cataclys...
A nonlinear 1D dynamo model with a heuristic #alpha#-ansatz for magnetic field-induced turbulence is...
Context. Magnetic fields in accretion disks play an important role in the rich dynamics of these sys...
We examine the behaviour of an axisymmetric galactic dynamo model with a radial accretion flow in th...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...
The magnetic field dynamo in the inner part of accretion disks around supermassive black holes in AG...
It is shown that a dynamo can operate in an Active Galactic Nuclei accretion disk due to the Kepleri...
It is shown that a dynamo can operate in an Active Galactic Nuclei (AGN) accretion disk due to the K...
We present a theory relating the central galactic black hole (BH) formation to the galactic dynamo t...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
A variety of observations suggest that magnetic fields are present in all galaxies and galaxy cluste...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
A new computational technique is developed that allows realistic calculations of dynamo magnetic fie...
Accretion disks are believed to be present in active galactic nuclei, binary X-ray sources, cataclys...
A nonlinear 1D dynamo model with a heuristic #alpha#-ansatz for magnetic field-induced turbulence is...
Context. Magnetic fields in accretion disks play an important role in the rich dynamics of these sys...
We examine the behaviour of an axisymmetric galactic dynamo model with a radial accretion flow in th...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...
Accepted for publication in Astronomy & Astrophysics, comments are still welcomeInternational audien...