Irregularity in gamma ray source spectra as a signature of axionlike particles
arXiv:1205.6428 · doi:10.1103/PhysRevD.86.043005
Abstract
Oscillations from high energy photons into light pseudoscalar particles in an external magnetic field are expected to occur in some extensions of the standard model. It is usually assumed that those axionlike particles (ALPs) could produce a drop in the energy spectra of gamma ray sources and possibly decrease the opacity of the Universe for TeV gamma rays. We show here that these assumptions are in fact based on an average behavior that cannot happen in real observations of single sources. We propose a new method to search for photon-ALP oscillations, taking advantage of the fact that a single observation would deviate from the average expectation. Our method is based on the search for irregularities in the energy spectra of gamma ray sources. We predict features that are unlikely to be produced by known astrophysical processes and a new signature of ALPs that is easily falsifiable.
6 pages, 3 figures, matches accepted version, improved discussion on magnetic field models in v2
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- Axion dark matter search using arm cavity transmitted beams of gravitational wave detectors
- On the origin and the detection of characteristic axion wiggles in photon spectra
- ALP induced polarization effects on photons from galaxy clusters
- Implications of photon-ALP oscillations in the extragalactic neutrino source TXS 0506+056 at sub-PeV energies
- Probing photon-ALP oscillations from the flat spectrum radio quasar 4C+21.35
- Probing eV ALPs with future LHAASO observation of AGN -ray spectra
- Axion-Like Particle Searches with IACTs
- Anisotropies in Non-Thermal Distortions of Cosmic Light from Photon-Axion Conversion
- Constraints on axion-like particles from ultra-high-energy observations of M87 with the HAWC observatory
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