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arXiv:2501.08382·v1·High Energy Physics — Phenomenology

Polarimetric searches for axion dark matter and high-frequency gravitational waves using optical cavities

Camilo García-Cely🇪🇸 · Luca Marsili🇪🇸 · Andreas Ringwald🇩🇪 · Aaron D. Spector🇩🇪

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Abstract

We revisit birefringence effects associated with the evolution of the polarization of light as it propagates through axion dark matter or the background of a passing gravitational wave (GW). We demonstrate that this can be described by a unified formalism, highlighting a synergy between searches for axions and high-frequency GWs. We show that by exploiting this framework, the optical cavities used by the ALPS II experiment can potentially probe axion masses in the range , offering competitive sensitivity with existing laboratory and astrophysical searches. Also building on this approach, we propose using these optical cavities to search for high-frequency GWs by measuring changes in the polarization of their laser. This makes it a promising method for exploring, in the near future, GWs with frequencies above MHz and strain sensitivities on the order of . Such sensitivity allows the exploration of currently unconstrained parameter space, complementing other high-frequency GW experiments. This work contributes to the growing community investigating novel approaches for high-frequency GW detection.

Comments: 32 pages, 8 figures

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