English

Axion Polarimetric Experiment (APE)

Optics 2026-07-01 v1 Instrumentation and Detectors

Abstract

We present the Axion Polarimetric Experiment (APE), a cavity-enhanced polarimeter designed to search for ultralight axion and axion-like-particle dark matter through a time-dependent rotation of the linear polarization of laser light. In cavity-based schemes, intracavity quarter-wave plates can restore coherent buildup of the axion-induced orthogonal polarization, but their transmissive loss limits the achievable finesse. To avoid transmissive intracavity optics, we propose a folded Fabry-Perot cavity that employs dielectric phase-shifting mirrors. At an incidence angle near 4545^\circ, these mirrors provide a reflection-phase difference Δϕϕsϕpπ/2\Delta\phi \equiv \phi_s-\phi_p \simeq \pi/2 between ss and pp polarizations and therefore act as reflective quarter-wave plates. We present the coating design, thickness optimization, and measurements of the phase shift and optical loss of the phase-shifting mirrors. Using a heterodyne polarimetric readout and an explicitly stated noise model, we derive design-level sensitivity projections for the axion-photon coupling gaγγg_{a\gamma\gamma}. These projections should be interpreted as target sensitivities for the proposed cavity configuration, since the full-system birefringence noise and angular-jitter coupling remain to be measured.

Cite

@article{arxiv.2607.00822,
  title  = {Axion Polarimetric Experiment (APE)},
  author = {Qazal Rokn and Ryan Netrval and Aldo Ejlli and Guido Mueller},
  journal= {arXiv preprint arXiv:2607.00822},
  year   = {2026}
}

Comments

16 pages, 11 figures