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Quantum information with continuous variables

Reviews of Modern Physics · 2005 · Vol. 77(2) · pp. 513–577
Samuel L. BraunsteinPeter van Loock

Abstract

Quantum information is a rapidly advancing area of interdisciplinary research. It may lead to real-world applications for communication and computation unavailable without the exploitation of quantum properties such as nonorthogonality or entanglement. This article reviews the progress in quantum information based on continuous quantum variables, with emphasis on quantum optical implementations in terms of the quadrature amplitudes of the electromagnetic field.

Quantum Information and CryptographyQuantum Mechanics and ApplicationsQuantum Computing Algorithms and ArchitecturePhysicsQuantum information scienceQuantum informationQuantum entanglementQuantumQuantum imagingQuantum capacityQuantum computerQuantum technologyQuantum network
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