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arXiv:1511.03380·v2·High Energy Astrophysical Phenomena

Axion-photon Propagation in Magnetized Universe

Chen Wang🇨🇳 · Dong Lai🇺🇸

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Abstract

Oscillations between photons and axion-like particles (ALP) travelling in intergalactic magnetic fields have been invoked to explain a number of astrophysical phenomena, or used to constrain ALP properties using observations. One example is the anomalous transparency of the universe to TeV gamma-rays. The intergalactic magnetic field is usually modeled as patches of coherent domains, each with a uniform magnetic field, but the field orientation changes randomly from one domain to the next ("discrete- model"). We show in this paper that in more realistic situations, when the magnetic field direction varies continuously along the propagation path, the photon-to-ALP conversion probability can be significantly different from the discrete- model. In particular, has a distinct dependence on the photon energy and ALP mass, and can be as large as 100 percent. This result may affect previous constraints on ALP properties based on ALP-photon propagation in intergalactic magnetic fields.

Comments: 15 pages, 5 figures, accepted for publication in JCAP

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