Measuring axion gradients with photon interferometry (MAGPI)
Abstract
We propose a novel search technique for axions with a -violating monopole coupling to bulk Standard Model charges . Gradients in the static axion field configurations sourced by matter induce achromatic circular photon birefringence via the axion-photon coupling . 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 for axion masses . If shot-noise-limited sensitivity can be achieved, an experiment using high-finesse RF FP cavities could reach a factor of into new parameter space for for masses .
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