scispace - formally typeset
Open AccessJournal ArticleDOI

Purification of Noisy Entanglement and Faithful Teleportation via Noisy Channels

Reads0
Chats0
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 $〈{\ensuremath{\Psi}}^{\ensuremath{-}}|M|{\ensuremath{\Psi}}^{\ensuremath{-}}〉g\frac{1}{2}$.

read more

Citations
More filters
Book ChapterDOI

Chapter 5 - Quantum cryptography

TL;DR: An elementary review article on quantum cryptography and its applications in medicine, science and technology.
Journal ArticleDOI

One-Shot Operational Quantum Resource Theory.

TL;DR: This work analyzes, from a resource-nonspecific standpoint, the optimal efficiency of resource formation and distillation tasks with only a single copy of the given quantum state, thereby establishing a unified framework of one-shot quantum resource manipulation.
Journal ArticleDOI

Undoing the effect of loss on quantum entanglement

TL;DR: The level of entanglement in the Einstein–Podolsky–Rosen state of light is higher than that achievable by direct transmission of any state through a similar loss channel, a key step towards realizing practical continuous-variable quantum communication protocols.
Posted Content

Quantum Error-Correcting Codes Need Not Completely Reveal the Error Syndrome

TL;DR: A code which does not find the complete error syndrome and can be used for reliable transmission of quantum information through channels which add more than one bit of entropy per transmitted bit.
Journal ArticleDOI

Mixed-state sensitivity of several quantum-information benchmarks

TL;DR: In this paper, the authors investigate the sensitivity of the common state measures (i.e., fidelity, trace distance, concurrence, tangle, von Neumann entropy, and linear entropy) when acted on by a depolarizing channel.
References
More filters
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.
Related Papers (5)