English

Measuring axion gradients with photon interferometry (MAGPI)

High Energy Physics - Phenomenology 2024-01-29 v2 Instrumentation and Detectors Optics

Abstract

We propose a novel search technique for axions with a CPCP-violating monopole coupling g~Q\tilde{g}_Q to bulk Standard Model charges Q{B,L,BL}Q \in \{B,L,B-L\}. Gradients in the static axion field configurations sourced by matter induce achromatic circular photon birefringence via the axion-photon coupling gϕγg_{\phi\gamma}. Circularly polarized light fed into an optical or (open) radio-frequency (RF) Fabry-P\'erot (FP) cavity develops a phase shift that accumulates up to the cavity finesse: the fixed axion spatial gradient prevents a cancellation known to occur for an axion dark-matter search. The relative phase shift between two FP cavities fed with opposite circular polarizations can be detected interferometrically. This time-independent signal can be modulated up to non-zero frequency by altering the cavity orientations with respect to the field gradient. Multi-wavelength co-metrology techniques can be used to address chromatic measurement systematics and noise sources. With Earth as the axion source, we project reach beyond current constraints on the product of couplings g~Qgϕγ\tilde{g}_Q g_{\phi\gamma} for axion masses mϕ105eVm_{\phi} \lesssim 10^{-5} \mathrm{eV}. If shot-noise-limited sensitivity can be achieved, an experiment using high-finesse RF FP cavities could reach a factor of 105\sim 10^{5} into new parameter space for g~Qgϕγ\tilde{g}_Q g_{\phi\gamma} for masses mϕ4×1011eVm_\phi \lesssim 4\times 10^{-11} \mathrm{eV}.

Keywords

Cite

@article{arxiv.2304.11261,
  title  = {Measuring axion gradients with photon interferometry (MAGPI)},
  author = {Michael A. Fedderke and Jedidiah O. Thompson and Raphael Cervantes and Bianca Giaccone and Roni Harnik and David E. Kaplan and Sam Posen and Surjeet Rajendran},
  journal= {arXiv preprint arXiv:2304.11261},
  year   = {2024}
}

Comments

9 pages, 2 figures. Published version

R2 v1 2026-06-28T10:14:15.734Z