Recent breakthrough and outlook in constraining the non-Newtonian gravity and axion-like particles from Casimir physicsReportar como inadecuado




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The European Physical Journal C

, 77:315

First Online: 17 May 2017Received: 12 April 2017Accepted: 05 May 2017DOI: 10.1140-epjc-s10052-017-4886-6

Cite this article as: Klimchitskaya, G.L. Eur. Phys. J. C 2017 77: 315. doi:10.1140-epjc-s10052-017-4886-6

Abstract

The strongest constraints on the Yukawa-type corrections to Newton’s gravitational law and on the coupling constants of axion-like particles to nucleons, following from recently performed experiments of Casimir physics, are presented. Specifically, the constraints obtained from measurements of the lateral and normal Casimir forces between sinusoidally corrugated surfaces, and from the isoelectronic experiment are considered, and the ranges of their greatest strength are refined. Minor modifications in the experimental setups are proposed which allow for strengthening the resultant constraints up to an order of magnitude. The comparison with some weaker constraints derived in the Casimir regime is also made.





Autor: G. L. Klimchitskaya

Fuente: https://link.springer.com/







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