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Demonstration of unconditional one-way quantum computations for continuous variables

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Authors

Ukai, Ryuji
Iwata, Noriaki
Shimokawa, Yuji
Armstrong, Seiji
Politi, Alberto
Yoshikawa, Jun-ichi
van Loock, Peter
Furusawa, Akira

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American Physical Society

Abstract

One-way quantum computation is a very promising candidate to fulfill the capabilities of quantum information processing. Here we demonstrate an important set of unitary operations for continuous variables using a linear cluster state of four entangled optical modes. These operations are performed in a fully measurement-controlled and completely unconditional fashion. We implement three different levels of squeezing operations and a Fourier transformation, all of which are accessible by selecting the correct quadrature measurement angles of the homodyne detections. Though not sufficient, these linear transformations are necessary for universal quantum computation.

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Source

Physical Review Letters

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