Temporal-mode continuous-variable cluster states using linear optics

Menicucci, N 2011, 'Temporal-mode continuous-variable cluster states using linear optics', Physical Review A - Atomic, Molecular, and Optical Physics, vol. 83, no. 6, 062314, pp. 1-9.


Document type: Journal Article
Collection: Journal Articles

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Title Temporal-mode continuous-variable cluster states using linear optics
Author(s) Menicucci, N
Year 2011
Journal name Physical Review A - Atomic, Molecular, and Optical Physics
Volume number 83
Issue number 6
Article Number 062314
Start page 1
End page 9
Total pages 9
Publisher American Physical Society
Abstract An extensible experimental design for optical continuous-variable cluster states of arbitrary size using four offline (vacuum) squeezers and six beam splitters is presented. This method has all the advantages of a temporal-mode encoding, including finite requirements for coherence and stability even as the computation length increases indefinitely, with none of the difficulty of inline squeezing. The extensibility stems from a construction based on Gaussian projected entangled pair states. The potential for use of this design within a fully fault-tolerant model is discussed.
Subject Quantum Optics
Quantum Information, Computation and Communication
DOI - identifier 10.1103/PhysRevA.83.062314
Copyright notice © 2011 American Physical Society
ISSN 1050-2947
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