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Dark matter detection using optically trapped Rydberg atom tweezer arrays

Published 17 Jul 2025 in hep-ph, astro-ph.CO, hep-ex, physics.atom-ph, and quant-ph | (2507.12860v1)

Abstract: A new scheme for detecting wave-like dark matter (DM) using Rydberg atoms is proposed. Recent advances in trapping and manipulating Rydberg atoms make it possible to use Rydberg atoms trapped in optical tweezer arrays for DM detection. We present a simple and innovative experimental procedure that searches for excitations of trapped Rydberg atoms due to DM-induced electric field. A scan over DM mass is enabled with the use of the Zeeman and diamagnetic shifts of energy levels under an applied external magnetic field. Taking dark photon DM as an example, we demonstrate that our proposed experiment can have high sensitivity enough to probe previously unexplored regions of the parameter space of dark photon coupling strengths and masses.

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