Constraining New Forces in the Casimir Regime Using the Isoelectronic Technique
We report the first isoelectronic differential force measurements between a Au-coated probe and two Au-coated films, made out of Au and Ge. These measurements, performed at submicron separations using soft microelectromechanical torsional oscillators, eliminate the need for a detailed understanding of the probe-film Casimir interaction. The observed differential signal is directly converted into limits on the parameters $α$ and $λ$ which characterize Yukawa-like deviations from Newtonian gravity. We find $α\lsim 10^{12}$ for $λ\sim 200$ nm, an improvement of $\sim$ 10 over previous limits.
hep-ph↗