Cosmic Ray Acceleration in Active Galactic Nuclei - On Centaurus A as a possible UHECR Source
Abstract
We discuss a representative selection of particle acceleration mechanisms believed to be operating in Active Galactic Nuclei. Starting from direct electrostatic field acceleration in the vicinity of the black hole up to Fermi-type particle acceleration in the jet and beyond, possible efficiency constraints on the energization of ultra-high energy cosmic rays (UHECR) are evaluated. When paradigmatically applied to Cen A, the following results are obtained: (i) Proton acceleration to energies of eV and beyond remains challenging and most likely requires the operation of an additional mechanism capable of boosting energetic seed protons up by a factor of ten. It is argued that shear acceleration along the large-scale jet in Cen A could be a promising candidate for this. (ii) Heavier elements, like iron nuclei, are more easily accelerated (by, e.g., shocks or direct electrostatic fields) and may not need additional boosting to reach ; (iii) If Cen A indeed proves to be an UHECR source, the cosmic ray composition might thus be expected to become heavier above energies of a few times eV.
Cite
@article{arxiv.0911.4004,
title = {Cosmic Ray Acceleration in Active Galactic Nuclei - On Centaurus A as a possible UHECR Source},
author = {Frank M. Rieger},
journal= {arXiv preprint arXiv:0911.4004},
year = {2009}
}
Comments
8 pages, one figure; based on invited talk at the JEM-EUSO Workshop, Torino/Italy, December 2008. To appear in Proceedings of the JEM-EUSO Workshop, under publication by UAP Tokyo, Japan