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Open AccessJournal ArticleDOI

Purification of Noisy Entanglement and Faithful Teleportation via Noisy Channels

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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Journal ArticleDOI

Multiparty remote state preparation

TL;DR: It is shown that it is possible to achieve a unity fidelity remote preparation of the state by properly choosing the measurement basis and this protocol may be used for converging the split information at one point.
Posted Content

Authentication of Quantum Messages.

TL;DR: In this paper, the authors studied the authentication of messages composed of quantum states and gave a formal definition of authentication in the quantum setting, and proposed a non-interactive scheme that enables A to both encrypt and authenticate an m qubit message by encoding it into m+s qubits, where the error probability decreases exponentially in the security parameter s.
Book ChapterDOI

Quantum Error Correction with Imperfect Gates

TL;DR: In this paper, a quantum state can be stored intact for arbitrary long time at a constant decoherence rate with arbitrary small error probability, and fault tolerance is achieved by quantum error correction.
Journal ArticleDOI

The Resource Theory of Stabilizer Computation

TL;DR: In this article, the authors develop a resource theory analogous to the theory of entanglement for resources for stabilizer codes and introduce two quantitative measures -monotones - for the amount of non-stabilizer resource.
Journal ArticleDOI

Multiphoton Quantum Optics and Quantum State Engineering

TL;DR: A review of theoretical and experimental aspects of multiphoton quantum optics can be found in this paper, where the authors concentrate their attention on parametric processes in nonlinear media, with special emphasis on the engineering of nonclassical states of photons and atoms.
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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