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Exact gate sequences for universal quantum computation using the XY interaction alone -: art. no. 052330

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PHYSICAL REVIEW A
卷 65, 期 5, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.65.052330

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In a previous publication [J. Kempe , Quantum Computation and Information (Rinton Press, Princeton, NJ, 2001), Vol. 1, special issue, p. 33] we showed that it is possible to implement universal quantum computation with the anisotropic XY-Heisenberg exchange acting as a single interaction. To achieve this we used encodings of the states of the computation into a larger Hilbert space. This proof is nonconstructive, however, and did not explicitly give the trade-offs in time that are required to implement encoded single-qubit operations and encoded two-qubit gates. Here we explicitly give the gate sequences needed to simulate these operations on encoded qubits and qutrits (three-level systems) and analyze the trade-offs involved. We also propose a possible layout for the qubits in a triangular arrangement.

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