arXiv:2506.17385·v2·High Energy Physics — Phenomenology
Magnetic Levitation as a New Probe of Non-Newtonian Gravity
Dorian W. P. Amaral🇺🇸 · Tim M. Fuchs🇬🇧 · Hendrik Ulbricht🇬🇧 · Christopher D. Tunnell🇺🇸
Abstract
We present MORRIS (Magnetic Oscillatory Resonator for Rare-Interaction Studies) and propose the first tabletop search for non-Newtonian gravity due to a Yukawa-like fifth force using a magnetically levitated particle. Our experiment comprises a levitated sub-millimeter magnet in a superconducting trap that is driven by a time-periodic source. Featuring short-, medium-, and long-term stages, MORRIS will admit increasing sensitivities to the force coupling strength , optimally probing screening lengths of . Our short-term setup provides a proof-of-principle study, with our medium- and long-term stages respectively constraining and , leading over existing bounds. Our projections are readily recastable to concrete models predicting the existence of fifth forces, and our statistical analysis is generally applicable to well-characterized sinusoidal driving forces. By leveraging ultralow dissipation and heavy test masses, MORRIS opens a new window onto tests of small-scale gravity and searches for physics beyond the Standard Model.
Comments: 11 pages, 6 figures, 1 table. Content matches published version