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Purification of Noisy Entanglement and Faithful Teleportation via Noisy Channels

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TLDR
Upper and lower bounds on the yield of pure singlets ($\ket{\Psi^-}$) distillable from mixed states $M$ are given, showing $D(M)>0$ if $\bra{Psi-}M\ket-}>\half$.
Abstract
Two separated observers, by applying local operations to a supply of not-too-impure entangled states (e.g., singlets shared through a noisy channel), can prepare a smaller number of entangled pairs of arbitrarily high purity (e.g., near-perfect singlets). These can then be used to faithfully teleport unknown quantum states from one observer to the other, thereby achieving faithful transmission of quantum information through a noisy channel. We give upper and lower bounds on the yield $D\left(M\right)$ of pure singlets $(|{\ensuremath{\Psi}}^{\ensuremath{-}}〉)$ distillable from mixed states $M$, showing $D\left(M\right)g0$ if $〈{\ensuremath{\Psi}}^{\ensuremath{-}}|M|{\ensuremath{\Psi}}^{\ensuremath{-}}〉g\frac{1}{2}$.

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Citations
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Bidirectional Controlled Remote Implementation of an Arbitrary Single Qubit Unitary Operation with EPR and Cluster States

TL;DR: In this paper, a scheme for bidirectional controlled implementation of arbitrary single qubit operations by using two EPR states and a five-qubit cluster state as the quantum channel is presented.
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Distillation protocols: Output entanglement and local mutual information

TL;DR: A complementary behavior between local mutual information and average outputEntanglement is derived for arbitrary bipartite ensembles, which leads to bounds on the yield of entanglement in distillation protocols that involve disinguishing.
Journal ArticleDOI

On the distillation and purification of phase-diffused squeezed states

TL;DR: In this article, a detailed experimental and theoretical analysis of several strategies for purification/distillation protocols on phase-diffused squeezed states is provided, with respect to the choice of the trigger quadrature, the trigger threshold value and the probability of generating a distilled state.
Journal ArticleDOI

Linear-Optics-Based Bidirectional Controlled Remote State Preparation via Five-Photon Cluster-Type States for Quantum Communication Network

TL;DR: In this paper, a scheme for bidirectional controlled remote preparation of arbitrary single-qubit states by using a five-photon cluster-type state as the quantum channel is presented.
Journal ArticleDOI

Entanglement concentration for unknown W class states

TL;DR: In this article, a theoretical entanglement concentration protocol for unknown triparticle W class states was proposed, and then the physical implementation of this proposal has also been presented in cavity QED.
References
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Journal ArticleDOI

Concentrating partial entanglement by local operations

TL;DR: Any pure or mixed entangled state of two systems can be produced by two classically communicating separated observers, drawing on a supply of singlets as their sole source of entanglement.
Journal ArticleDOI

Generalized privacy amplification

TL;DR: This paper provides a general treatment of privacy amplification by public discussion, a concept introduced by Bennett, Brassard, and Robert for a special scenario, and yields results on wiretap and broadcast channels for a considerably strengthened definition of secrecy capacity.
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