arXiv · quant-ph/0410177
Phase-sensitive detection of Bragg scattering at 1D optical lattices
Abstract
We report on the observation of Bragg scattering at 1D atomic lattices. Cold atoms are confined by optical dipole forces at the antinodes of a standing wave generated by the two counter-propagating modes of a laser-driven high-finesse ring cavity. By heterodyning the Bragg-scattered light with a reference beam, we obtain detailed information on phase shifts imparted by the Bragg scattering process. Being deep in the Lamb-Dicke regime, the scattered light is not broadened by the motion of individual atoms. In contrast, we have detected signatures of global translatory motion of the atomic grating.
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S. Slama, C. von Cube, B. Deh, A. Ludewig, C. Zimmermann, Ph. W. Courteille. 2004-10-22. Phase-sensitive detection of Bragg scattering at 1D optical lattices. https://doi.org/10.1103/physrevlett.94.193901
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