Contrast interferometry using Bose-Einstein condensates to measure h/m and alpha

The kinetic energy of an atom recoiling due to absorption of a photon was measured as a frequency, using an interferometric technique called "contrast interferometry." Optical standing wave pulses were used to create a symmetric three-path interferometer with a Bose-Einstein condensate. It...

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Veröffentlicht in:Physical review letters 2002-09, Vol.89 (14), p.140401-140401, Article 140401
Hauptverfasser: Gupta, S, Dieckmann, K, Hadzibabic, Z, Pritchard, D E
Format: Artikel
Sprache:eng
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Zusammenfassung:The kinetic energy of an atom recoiling due to absorption of a photon was measured as a frequency, using an interferometric technique called "contrast interferometry." Optical standing wave pulses were used to create a symmetric three-path interferometer with a Bose-Einstein condensate. Its recoil phase, measurable with a single shot, varies quadratically with additional recoils and is insensitive to errors from vibrations and ac Stark shifts. We have measured the photon recoil frequency of sodium to 7 ppm precision, using a simple realization of this scheme. Plausible extensions should yield sufficient precision to attain a ppb-level determination of h/m and the fine structure constant alpha.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.89.140401