Constraining axion-like dark matter with a radio-frequency atomic magnetometer

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Main Authors: Rigoulet, A., Nanos, S., Kominis, I. K., Antypas, D.
Format: Preprint
Published: 2026
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author Rigoulet, A.
Nanos, S.
Kominis, I. K.
Antypas, D.
author_facet Rigoulet, A.
Nanos, S.
Kominis, I. K.
Antypas, D.
contents We report on a broadband search for axion-like-particle (ALP) interactions using a radio-frequency-operated $^{87}\mathrm{Rb}$ atomic magnetometer. The instrument provides wide spectral coverage and sensitivity to an oscillating pseudomagnetic field that may be generated by the gradient coupling of the ALP field to the constituent fermions of atoms. We search for an ALP-gradient signature in the mass range $2.40\times10^{-10}\,\mathrm{eV}/c^{2}$--$2.11\times10^{-9}\,\mathrm{eV}/c^{2}$. No statistically significant signatures of an oscillating magnetic field are observed, and we derive upper limits on the corresponding ALP-proton, -neutron and -electron couplings, $g_{αpp}$, $g_{αnn}$ and $g_{αee}$, respectively. The result on $g_{αpp}$ improves over previous laboratory searches, while the limits on $g_{αnn}$ and $g_{αee}$ complement earlier laboratory searches and astrophysical bounds. The work extends searches for ALP-fermion interactions into a mass region largely unexplored in a dark-matter context, demonstrating the potential of our method for broadband axion-like particle searches targeting the Galactic dark-matter halo.
format Preprint
id arxiv_https___arxiv_org_abs_2601_09638
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Constraining axion-like dark matter with a radio-frequency atomic magnetometer
Rigoulet, A.
Nanos, S.
Kominis, I. K.
Antypas, D.
Atomic Physics
High Energy Physics - Phenomenology
We report on a broadband search for axion-like-particle (ALP) interactions using a radio-frequency-operated $^{87}\mathrm{Rb}$ atomic magnetometer. The instrument provides wide spectral coverage and sensitivity to an oscillating pseudomagnetic field that may be generated by the gradient coupling of the ALP field to the constituent fermions of atoms. We search for an ALP-gradient signature in the mass range $2.40\times10^{-10}\,\mathrm{eV}/c^{2}$--$2.11\times10^{-9}\,\mathrm{eV}/c^{2}$. No statistically significant signatures of an oscillating magnetic field are observed, and we derive upper limits on the corresponding ALP-proton, -neutron and -electron couplings, $g_{αpp}$, $g_{αnn}$ and $g_{αee}$, respectively. The result on $g_{αpp}$ improves over previous laboratory searches, while the limits on $g_{αnn}$ and $g_{αee}$ complement earlier laboratory searches and astrophysical bounds. The work extends searches for ALP-fermion interactions into a mass region largely unexplored in a dark-matter context, demonstrating the potential of our method for broadband axion-like particle searches targeting the Galactic dark-matter halo.
title Constraining axion-like dark matter with a radio-frequency atomic magnetometer
topic Atomic Physics
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2601.09638