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Upper Bounds on Device-Independent Quantum Key Distribution.

作者信息

Christandl Matthias, Ferrara Roberto, Horodecki Karol

机构信息

QMATH, Department of Mathematical Sciences, University of Copenhagen, Universitetsparken 5, 2100 Copenhagen Ø, Denmark.

Lehr- und Forschungseinheit für Nachrichtentechnik, Technische Universität München, 80333 Munich, Germany.

出版信息

Phys Rev Lett. 2021 Apr 23;126(16):160501. doi: 10.1103/PhysRevLett.126.160501.

Abstract

Quantum key distribution (QKD) is a method that distributes a secret key to a sender and a receiver by the transmission of quantum particles (e.g., photons). Device-independent quantum key distribution (DIQKD) is a version of QKD with a stronger notion of security, in that the sender and receiver base their protocol only on the statistics of input and outputs of their devices as inspired by Bell's theorem. We study the rate at which DIQKD can be carried out for a given bipartite quantum state distributed between the sender and receiver or a quantum channel connecting them. We provide upper bounds on the achievable rate going beyond upper bounds possible for QKD. In particular, we construct states and channels where the QKD rate is significant while the DIQKD rate is negligible. This gap is illustrated for a practical case arising when using standard postprocessing techniques for entangled two-qubit states.

摘要

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