English

Behavior of axion-like particles in smoothed out domain-like magnetic fields

High Energy Astrophysical Phenomena 2019-07-11 v3 High Energy Physics - Phenomenology

Abstract

Basically, in certain circumstances axion-like particles (ALPs) substantially enhance the photon survival probability Pγγ(E)P_{\gamma \to \gamma} ({\cal E}) of a beam emitted by a far-away source through the mechanism of photon-ALP oscillation (E{\cal E} denotes the energy). But in order for this to work, an external magnetic field B{\bf B} must be present. In several cases B{\bf B} is modeled as a domain-like network with `sharp edges': all domains have the same size LdomL_{\rm dom} (set by the B{\bf B} coherence length) and the same strength B, but the direction of B{\bf B} changes randomly and abruptly from one domain to the next. It is obviously a highly mathematical idealization wherein the components of B{\bf B} are discontinuous across the edges (whence the name sharp edges). It is therefore highly desirable to go a step further, and to find out what happens when the edges are smoothed out, namely when the abrupt change of B{\bf B} is replaced by a smooth one. Moreover, this step becomes compelling when the photon-ALP oscillation length loscl_{\rm osc} turns out to be comparable to -- or smaller than -- LdomL_{\rm dom}, because in this case the photon survival probability Pγγ(E)P_{\gamma \to \gamma} ({\cal E}) critically depends on the domain shape. In the present paper we propose a smoothed out version of the previous domain-like structure of B{\bf B} which incorporates the above changes, and we work out its implications. Even in the present case we are able to solve analytically and exactly the photon/ALP beam propagation equation inside a single smoothed-out domain, thereby evaluating the corresponding Pγγ(E)P_{\gamma \to \gamma} ({\cal E}) exactly. Our results is of particular importance in view of the new generation of gamma-ray detectors, since in such a situation loscLdoml_{\rm osc} \lesssim L_{\rm dom} occurs just above the TeV scale.

Keywords

Cite

@article{arxiv.1804.09443,
  title  = {Behavior of axion-like particles in smoothed out domain-like magnetic fields},
  author = {Giorgio Galanti and Marco Roncadelli},
  journal= {arXiv preprint arXiv:1804.09443},
  year   = {2019}
}

Comments

30 pages, 14 figures. This version matches the published paper: Phys. Rev. D 98, 043018 (2018)