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paper

Efficient quantum circuits for one-way quantum computing

arXiv:0804.2290 · doi:10.1103/PhysRevLett.102.100501

Abstract

While Ising-type interactions are ideal for implementing controlled phase flip gates in one-way quantum computing, natural interactions between solid-state qubits are most often described by either the XY or the Heisenberg models. We show an efficient way of generating cluster states directly using either the iSWAP gate for the XY model, or the $\sqrt{\rm SWAP}$ gate for the Heisenberg model. Our approach thus makes one-way quantum computing more feasible for solid-state devices.

4 pages, 2 figures