Constraints on Yukawa-Type Deviations from Newtonian Gravity at 20 Microns

Phys.Rev.D72:122001,2005; Erratum-ibid.D72:129901,2005 Recent theories of physics beyond the standard model have predicted deviations from Newtonian gravity at short distances. In order to test these theories, we have a built an apparatus that can measure attonewton-scale forces between gold masses...

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Hauptverfasser: Smullin, S. J, Geraci, A. A, Weld, D. M, Chiaverini, J, Holmes, S, Kapitulnik, A
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Sprache:eng
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Zusammenfassung:Phys.Rev.D72:122001,2005; Erratum-ibid.D72:129901,2005 Recent theories of physics beyond the standard model have predicted deviations from Newtonian gravity at short distances. In order to test these theories, we have a built an apparatus that can measure attonewton-scale forces between gold masses separated by distances on the order of 25 microns. A micromachined silicon cantilever was used as the force sensor, and its displacement was measured with a fiber interferometer. We have used our measurements to set bounds on the magnitude alpha and length scale lambda of Yukawa-type deviations from Newtonian gravity; our results presented here yield the best experimental limit in the range of lambda=6--20 microns.
DOI:10.48550/arxiv.hep-ph/0508204