Experimental realization of one-way quantum computing with two-photon four-qubit cluster states
arXiv:0705.0174 · doi:10.1103/PhysRevLett.99.120503
Abstract
We report an experimental realization of one-way quantum computing on a two-photon four-qubit cluster state. This is accomplished by developing a two-photon cluster state source entangled both in polarization and spatial modes. With this special source, we implemented a highly efficient Grover's search algorithm and high-fidelity two qubits quantum gates. Our experiment demonstrates that such cluster states could serve as an ideal source and a building block for rapid and precise optical quantum computation.
4 pages, 3 figures
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