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New bounds and future prospects for axion force searches at Penning trap experiments

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arxiv 2310.18797 v2 pith:BPMGL67U submitted 2023-10-28 hep-ph hep-exphysics.atom-ph

classification hep-phhep-exphysics.atom-ph
keywords axionelectronpenningtrapexperimentsforceforcesacting
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abstract

In this note we consider Penning trap experiments as probes of axion-mediated forces. We show that the current measurement of electron's $g$-factor already sets a new exclusion limit for monopole-dipole axion forces acting on the electron spin. We also show that the Penning trap's capability of switching an electron and a positron can isolate the effect of an axion force and suppress systematic effects.

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  1. High Precision Fundamental Physics Experiments at JLab with Spin-transparent Storage Rings of Low-energy Polarized Electron Beams

    nucl-ex 2026-08 conditional novelty 4.0 of 10

    A compact all-electric Figure-8 spin-transparent storage ring at JLab could directly measure the electron EDM at about 5.8e-30 ecm and detect axion-induced spin precession at 0.2 nHz, if one-day spin coherence holds.

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