Photon-axion mixing within the jets of Active Galactic Nuclei and prospects for detection
arXiv:1405.3227 · doi:10.1088/1475-7516/2014/10/018
Abstract
Very high energy gamma-ray observations of distant active galactic nuclei (AGN) generally result in higher fluxes and harder spectra than expected, resulting in some tension with the level of the extragalactic background light (EBL). If hypothetical axions or axion-like particles (ALPs) were to exist, this tension could be relieved since the oscillation of photons to ALPs would mitigate the effects of EBL absorption and lead to softer inferred intrinsic AGN spectra. In this paper we consider the effect of photon-ALP mixing on observed spectra, including the photon-ALP mixing that would occur within AGN jets. We then simulate observations of three AGN with the Cherenkov Telescope Array (CTA), a next generation gamma-ray telescope, to determine its prospects for detecting the signatures of photon-ALP mixing on the spectra. We conclude that prospects for CTA detecting these signatures or else setting limits on the ALP parameter space are quite promising. We find that prospects are improved if photon-ALP mixing within the jet is properly considered and that the best target for observations is PKS 2155-304.
20 Pages, 5 figures, submitted to JCAP. v3: Corrections at the referee's request, mainly in S2.1
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Cited by in corpus (7)
- Photons to axion-like particles conversion in Active Galactic Nuclei
- Axion-like Particles Implications for High-Energy Astrophysics
- A Correlation Between Hard Gamma-ray Sources and Cosmic Voids Along the Line of Sight
- Understanding the TeV emission from a distant blazar PKS 1424+240 in a lepto-hadronic jet model
- Relevance of jet magnetic field structure for blazar axionlike particle searches
- Constraints on axionlike particles from a combined analysis of three flaring flat-spectrum radio quasars
- Photon-ALP conversions inside AGN