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arXiv:2206.06364·v2·High Energy Physics — Phenomenology

Laboratory constraints on ultralight axion-like particles from precision atomic spectroscopy

Joshua Berger🇺🇸 · Amit Bhoonah🇺🇸

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Abstract

Ultralight bosonic dark matter has come under increasing scrutiny as a dark matter candidate that has the potential to resolve puzzles in astronomical observation. We demonstrate that high-precision measurements of time variation in the frequency ratios of atomic transitions achieves leading sensitivity to ultralight axion-like particle dark matter at low masses. These bounds are the first laboratory-based bounds on this class of dark matter models. We propose further measurements that could enhance sensitivity to ultralight axion-like particles.

Comments: Major revision compared to previous version. New focus on axions

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