4.6 Article

Single-qubit rotations in two-dimensional optical lattices with multiqubit addressing

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PHYSICAL REVIEW A
卷 74, 期 4, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.74.042344

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Optical lattices with one atom on each site and interacting via cold controlled collisions provide an efficient way to entangle a large number of qubits with high fidelity. It has already been demonstrated experimentally that this approach is especially suited for the generation of cluster states [O. Mandel , Nature 425, 937 (2003)] which reduce the resource requirement for quantum computing to the ability to perform single-qubit rotations and qubit read out. In this paper, we describe how to implement these rotations in one-dimensional and two-dimensional optical lattices without having to address the atoms individually with a laser field.

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