Photons in a cold axion background and strong magnetic fields: Polarimetric consequences

Author:

Espriu Domènec1,Renau Albert1

Affiliation:

1. Departament d’Estructura i Constituents de la Matèria, Institut de Ciències del Cosmos (ICCUB), Universitat de Barcelona, Martí Franquès 1, Barcelona, 08028, Spain

Abstract

In this work, we analyze the propagation of photons in an environment where a strong magnetic field (perpendicular to the photon momenta) coexists with an oscillating cold axion background with the characteristics expected from dark matter in the galactic halo. Qualitatively, the main effect of the combined background is to produce a three-way mixing among the two photon polarizations and the axion. It is interesting to note that in spite of the extremely weak interaction of photons with the cold axion background, its effects compete with those coming from the magnetic field in some regions of the parameter space. We determine (with one plausible simplification) the proper frequencies and eigenvectors as well as the corresponding photon ellipticity and induced rotation of the polarization plane that depend both on the magnetic field and the local density of axions. We also comment on the possibility that some of the predicted effects could be measured in optical table-top experiments.

Publisher

World Scientific Pub Co Pte Lt

Subject

Astronomy and Astrophysics,Nuclear and High Energy Physics,Atomic and Molecular Physics, and Optics

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Axion cloud decay due to the axion–photon conversion with background magnetic fields;Publications of the Astronomical Society of Japan;2021-12-08

2. Hidden photon dark matter interacting via axion-like particles;Journal of Cosmology and Astroparticle Physics;2021-05-01

3. Optical properties of dynamical axion backgrounds;Physical Review D;2020-06-04

4. Stability of axion dark matter-photon conversion;Physical Review D;2020-02-05

5. No chiral light bending by clumps of axion-like particles;Physics of the Dark Universe;2020-01

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