paper

Axion Dark Matter Modulated Spin Wave Interferometry

arXiv:2608.07136

Abstract

We propose a novel asymmetric spin wave interferometer to detect ultralight axion dark matter. The axion modulates spin-wave properties via a weak effective magnetic field in ferromagnets. The interferometer splits a spin-wave source into two paths of different lengths and sets them to interfere destructively. The system then converts the axion-induced phase shift into a measurable magnetization oscillation that can radiate electromagnetic waves and generate electrical signals via Faraday induction. The signal-to-noise ratios have been evaluated for three detection schemes: the linear amplifier, the single-photon detector, and the electrical signal detection approach, accounting for both magnetization fluctuation and thermal noise. The accessible axion mass range is approximately eV to eV, set by the spin wave propagation length and the relaxation time.

11 pages, 2 figures

Axion Dark Matter Modulated Spin Wave Interferometry · wovepaper