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CMB Spectral Distortions from an Axion-Dark Photon-Photon Interaction

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arxiv 2306.13135 v3 pith:COC27EEE submitted 2023-06-22 hep-ph astro-ph.CO

classification hep-phastro-ph.CO
keywords darkcouplingfieldsinteractioninteractionslightphotontilde
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

The presence of a plethora of light spin 0 and spin 1 fields is motivated in a number of BSM scenarios, such as the axiverse. The study of the interactions of such light bosonic fields with the Standard Model has focused mostly on interactions involving only one such field, such as the axion ($\phi$) coupling to photons, $\phi F \tilde F$, or the kinetic mixing between photon and the dark photon, $ F F_D$. In this work, we continue the exploration of interactions involving two light BSM fields and the standard model, focusing on the mixed axion-photon-dark-photon interaction $\phi F \tilde F_D$. If either the axion or dark photon are dark matter, we show that this interaction leads to conversion of the CMB photons into a dark sector particle, leading to a distortion in the CMB spectrum. We present the details of these unique distortion signatures and the resulting constraints on the $\phi F \tilde F_D$ coupling. In particular, we find that for a wide range of masses, the constraints from these effect are stronger than on the more widely studied axion-photon coupling.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Excess Radiation from Axion-Photon Conversion

    astro-ph.CO 2024-11 conditional novelty 6.0 of 10

    Resonant conversion of axion-like particles into photons in stochastic magnetic fields can produce an f^-2 radio excess matching ARCADE-2 and deepen the 21cm absorption trough seen by EDGES.

  2. Probing the Axion-Photon-Dark Photon Interaction at Future $e^+e^-$ Colliders

    hep-ph 2025-09 conditional novelty 5.0 of 10

    Future e+e- colliders can probe the axion-photon-dark photon coupling down to about 10^-4 GeV^-1 for dark photon masses near 10 GeV via single-photon events with missing energy.

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