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Quantum Computing with Continuous-Variable Clusters

2009/03/19 by Mile Gu, Christian Weedbrook, Nicolas C. Menicucci +2 · 3 citations
Physics and Astronomy · #quant-ph

paper · pdf · doi:10.1103/physreva.79.062318

published as Phys. Rev. A 79, 062318 (2009). · 17 pages, 5 figures

arxiv created 2009/03/19 · arxiv updated 2015/05/13

Abstract

Continuous-variable cluster states offer a potentially promising method of implementing a quantum computer. This paper extends and further refines theoretical foundations and protocols for experimental implementation. We give a cluster-state implementation of the cubic phase gate through photon detection, which, together with homodyne detection, facilitates universal quantum computation. In addition, we characterize the offline squeezed resources required to generate an arbitrary graph state through passive linear optics. Most significantly, we prove that there are universal states for which the offline squeezing per mode does not increase with the size of the cluster. Simple representations of continuous-variable graph states are introduced to analyze graph state transformations under measurement and the existence of universal continuous-variable resource states.

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