9 research outputs found

    Momentum state engineering and control in Bose-Einstein condensates

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    We demonstrate theoretically the use of genetic learning algorithms to coherently control the dynamics of a Bose-Einstein condensate. We consider specifically the situation of a condensate in an optical lattice formed by two counterpropagating laser beams. The frequency detuning between the lasers acts as a control parameter that can be used to precisely manipulate the condensate even in the presence of a significant mean-field energy. We illustrate this procedure in the coherent acceleration of a condensate and in the preparation of a superposition of prescribed relative phase.Comment: 9 pages incl. 6 PostScript figures (.eps), LaTeX using RevTeX, submitted to Phys. Rev. A, incl. small modifications, some references adde

    The Expression and Functional Roles of miRNAs in Embryonic and Lineage-Specific Stem Cells

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    Delineating nuclear reprogramming

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    Neuroblastoma and Related Tumors

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    Tumour-inhibiting platinum complexes—state of the art and future perspectives

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