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We demonstrate the arbitrary control of the density profile of a two-dimensional Bose gas by shaping the optical potential applied to the atoms.
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R.Y. Chiao, E. Garmire, and C.H. Townes · 1964
Earlier work this paper cites.
An adaptive algorithm for spatial gray-scale
R.W. Floyd · 1976
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Earlier work this paper cites.
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Earlier work this paper cites.
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Earlier work this paper cites.
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S. Bergamini, B. Darquié, M. Jones, L. Jacubowiez, A. Browaeys, and P. Grangier · 2004
Earlier work this paper cites.
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Earlier work this paper cites.
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Loading and compression of a single two-dimensional Bose gas in an optical accordion
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Defect-free assembly of 2D clusters of more than 100 single-atom quantum systems
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Single-atom trapping in holographic 2D arrays of microtraps with arbitrary geometries
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Emergence of coherence via transverse condensation in a uniform quasi-two-dimensional Bose gas
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Direct imaging of a digital-micromirror device for configurable microscopic optical potentials
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