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Measurement-based quantum computation on cluster states

Physical Review A · 2003 · Vol. 68(2)
Robert RaussendorfDan E. BrowneHans J. Briegel

Abstract

We give a detailed account of the one-way quantum computer, a scheme of quantum computation that consists entirely of one-qubit measurements on a particular class of entangled states, the cluster states. We prove its universality, describe why its underlying computational model is different from the network model of quantum computation, and relate quantum algorithms to mathematical graphs. Further we investigate the scaling of required resources and give a number of examples for circuits of practical interest such as the circuit for quantum Fourier transformation and for the quantum adder. Finally, we describe computation with clusters of finite size.

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum Mechanics and ApplicationsQuantum computerCluster stateQuantum algorithmQuantum networkComputer scienceComputationQuantum informationQuantum Fourier transformQuantum circuitQubit

Funding

  • Deutsche Forschungsgemeinschaft
Citations
1,616
FWCI
58.98
field-weighted impact
References
46
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100%
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Physical Review Letters · 2001 · 4,407 citations
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