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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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Unconditional privacy over channels which cannot convey quantum information.

TL;DR: Here it is shown that one can obtain verifiable privacy even through some channels which cannot be used to reliably send quantum states, and this need not be the case.
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Entanglement, Quantum Entropy and Mutual Information

TL;DR: In this paper, the operational structure of quantum couplings and entanglements is studied and classified for semi-classical von Neumann algebras, and the quantum capacity may double the classical capacity, achieved as the supremum over all d-couplings, bounded by the logarithm of the dimensionality of a maximal Abelian subalgebra.
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Quantum rectifier in a one-dimensional photonic channel

TL;DR: By using a fully quantum approach based on an input-output formulation of the stochastic Schrodinger equation, this paper showed rectification of radiation fields in a one-dimensional waveguide doped with a pair of ideal two-level systems for three topical cases: classical driving, under the action of noise, and single-photon pulsed excitation.
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Experimental demonstration of a digital quantum simulation of a general PT -symmetric system

TL;DR: In this article, a general two-level operation in a quantum computation frame with a universal circuit model was shown to achieve entanglement restoration in a four-qubit liquid nuclear magnetic resonance platform.
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An entanglement concentration protocol for cluster states

TL;DR: This paper develops an entanglement concentration protocol for partially entangled pure cluster class state with an even number of qubits and uses only local operations for this protocol.
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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