arXiv · cond-mat/0605184
Preparation of a quantum state with one molecule at each site of an optical lattice
Abstract
Ultracold gases in optical lattices are of great interest, because these systems bear a great potential for applications in quantum simulations and quantum information processing, in particular when using particles with a long-range dipole-dipole interaction, such as polar molecules. Here we show the preparation of a quantum state with exactly one molecule at each site of an optical lattice. The molecules are produced from an atomic Mott insulator with a density profile chosen such that the central region of the gas contains two atoms per lattice site. A Feshbach resonance is used to associate the atom pairs to molecules. Remaining atoms can be removed with blast light. The technique does not rely on the molecule-molecule interaction properties and is therefore applicable to many systems.
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T. Volz, N. Syassen, D. M. Bauer, E. Hansis, S. Dürr, G. Rempe. 2007-04-04. Preparation of a quantum state with one molecule at each site of an optical lattice. https://doi.org/10.1038/nphys415
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