Anisotropy vs chemical composition at ultra-high energies
- 1 November 2009
- journal article
- Published by IOP Publishing in Journal of Cosmology and Astroparticle Physics
- Vol. 2009 (11) , 009
- https://doi.org/10.1088/1475-7516/2009/11/009
Abstract
This paper proposes and discusses a test of the chemical composition of ultra-high energy cosmic rays that relies on the anisotropy patterns measured as a function of energy. In particular, we show that if one records an anisotropy signal produced by heavy nuclei of charge Z above an energy Ethr, one should record an even stronger (possibly much stronger) anisotropy at energies >Ethr/Z due to the proton component that is expected to be associated with the sources of the heavy nuclei. This conclusion remains robust with respect to the parameters characterizing the sources and it does not depend at all on the modelling of astrophysical magnetic fields. As a concrete example, we apply this test to the most recent data of the Pierre Auger Observatory. Assuming that the anisotropy reported above 55 EeV is not a statistical accident, and that no significant anisotropy has been observed at energies 10 EeV, we show that the apparent clustering toward Cen A cannot be attributed to heavy nuclei. Similar conclusions are drawn regarding the apparent excess correlation with nearby active galactic nuclei. We then discuss a robust lower bound to the magnetic luminosity that a source must possess in order to be able to accelerate particles of charge Z up to 100 EeV, LB 1045 Z−2 erg/s. Using this bound in conjunction with the above conclusions, we argue that the current PAO data does not support the model of cosmic ray origin in active radio-quiet or even radio-loud galaxies. Finally, we demonstrate that the apparent clustering in the direction of Cen A can be explained by the contribution of the last few gamma-ray bursts or magnetars in the host galaxy thanks to the scattering of the cosmic rays on the magnetized lobes.Keywords
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This publication has 65 references indexed in Scilit:
- Overview of Recent HiRes ResultsNuclear Physics B - Proceedings Supplements, 2009
- Observation of the Suppression of the Flux of Cosmic Rays abovePhysical Review Letters, 2008
- First Observation of the Greisen-Zatsepin-Kuzmin SuppressionPhysical Review Letters, 2008
- Multi-Messenger Cosmic ParticlesAstronomische Nachrichten, 2007
- A Study of the Composition of Ultra–High‐Energy Cosmic Rays Using the High‐Resolution Fly’s EyeThe Astrophysical Journal, 2005
- Magnetars in the Metagalaxy: An Origin for Ultra–High‐Energy Cosmic Rays in the Nearby UniverseThe Astrophysical Journal, 2003
- The Acceleration of Ultra--High-Energy Cosmic Rays in Gamma-Ray BurstsThe Astrophysical Journal, 1995
- Possible Association of Ultra–High-Energy Cosmic-Ray Events with Strong Gamma-Ray BurstsThe Astrophysical Journal, 1995
- Cosmological Gamma-Ray Bursts and the Highest Energy Cosmic RaysPhysical Review Letters, 1995
- End to the Cosmic-Ray Spectrum?Physical Review Letters, 1966