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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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Entanglement universality of two-qubit X-states

TL;DR: In this paper, a parametric form of a unitary transformation that converts arbitrary two-qubit states into their X-counterpart is presented, and a semi-analytic prescription on how to set the parameters of this transformation in order to preserve concurrence or negativity.
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Two-copy Quantum Teleportation

TL;DR: It is proved that under a specific case of the protocol, which is significant for improving the optimal fidelity, the set of states with their two-copy fully entangled fractions bounded by a threshold value that required for useful two- copy teleportation is convex and compact.
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Linking classical and quantum key agreement: Is there a classical analog to bound entanglement?

TL;DR: It is proved that a quantum state between two parties is entangled if and only if the classical random variables resulting from optimal measurements provide some mutual classical information between the parties.
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On multiparticle W states, their implementations and application in the quantum informational problems

TL;DR: In this paper, the authors present a generalization of the W-class of entangled states of light generated in down conversion processes, and a brief overview of these states, schemes for their preparation, experimental implementations and possible applications are presented.
PatentDOI

Long-distance quantum communication

TL;DR: In this paper, an approach for high fidelity quantum communication over long communication channels even in the presence of significant loss in the channels is described. Butler et al. employed laser manipulation of quantum correlated atomic ensembles using linear optic components, optical sources of low intensity pulses, beam splitters, and single-photon detectors requiring only moderate efficiencies.
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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