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arXiv:2006.15787·v3·High Energy Physics — Phenomenology

Experimental constraint on axion-like particle coupling over seven orders of magnitude in mass

Tanya S. Roussy🇺🇸 · Daniel A. Palken🇺🇸 · William B. Cairncross🇺🇸 · Benjamin M. Brubaker🇺🇸 · Daniel N. Gresh🇺🇸 · Matt Grau🇺🇸 · Kevin C. Cossel🇺🇸 · Kia Boon Ng🇺🇸 · Yuval Shagam🇺🇸 · Yan Zhou🇺🇸 · Victor V. Flambaum🇦🇺 · Konrad W. Lehnert🇺🇸 · Jun Ye🇺🇸 · Eric A. Cornell🇺🇸

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Abstract

We use our recent electric dipole moment (EDM) measurement data to constrain the possibility that the HfF EDM oscillates in time due to interactions with candidate dark matter axion-like particles (ALPs). We employ a Bayesian analysis method which accounts for both the look-elsewhere effect and the uncertainties associated with stochastic density fluctuations in the ALP field. We find no evidence of an oscillating EDM over a range spanning from 27 nHz to 400 mHz, and we use this result to constrain the ALP-gluon coupling over the mass range eV. This is the first laboratory constraint on the ALP-gluon coupling in the eV range, and the first laboratory constraint to properly account for the stochastic nature of the ALP field.

Comments: 5 pages, 3 figures

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