Probing Atom-Surface Interactions by Diffraction of Bose-Einstein Condensates

In this article, we analyze the Casimir-Polder interaction of atoms with a solid grating and the repulsive interaction between the atoms and the grating in the presence of an external laser source. The Casimir-Polder potential is evaluated exactly in terms of Rayleigh reflection coefficients and via...

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Veröffentlicht in:Physical review. X 2014-02, Vol.4 (1), p.011029, Article 011029
Hauptverfasser: Bender, Helmar, Stehle, Christian, Zimmermann, Claus, Slama, Sebastian, Fiedler, Johannes, Scheel, Stefan, Buhmann, Stefan Yoshi, Marachevsky, Valery N.
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Sprache:eng
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Zusammenfassung:In this article, we analyze the Casimir-Polder interaction of atoms with a solid grating and the repulsive interaction between the atoms and the grating in the presence of an external laser source. The Casimir-Polder potential is evaluated exactly in terms of Rayleigh reflection coefficients and via an approximate Hamaker approach. The laser-tuned repulsive interaction is given in terms of Rayleigh transmission coefficients. The combined potential landscape above the solid grating is probed locally by diffraction of Bose-Einstein condensates. Measured diffraction efficiencies reveal information about the shape of the potential landscape in agreement with the theory based on Rayleigh decompositions.
ISSN:2160-3308
2160-3308
DOI:10.1103/PhysRevX.4.011029