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Conditional efficient multiuser quantum cryptography network

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TLDR
A conditional quantum key distribution scheme with three nonorthogonal states with the addition of a device called ``space optical switch'' and a realization of a quantum random number generator is proposed.
Abstract
We propose a conditional quantum key distribution scheme with three nonorthogonal states. Combined with the idea presented by Lo et al. (H.-K. Lo, H. F. Chau, and M. Ardehali, e-print arXiv: quant-ph/0011056), the efficiency of this scheme is increased to tend to 100%. Also, such a refined data analysis guarantees the security of our scheme against the most general eavesdropping strategy. Then, based on the scheme, we present a quantum cryptography network with the addition of a device called ``space optical switch.'' Moreover, we give out a realization of a quantum random number generator. Thus, a feasible experimental scheme of this efficient quantum cryptography network is completely given.

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Journal ArticleDOI

Two-step quantum direct communication protocol using the Einstein-Podolsky-Rosen pair block

TL;DR: A protocol for quantum secure direct communication using blocks of Einstein-Podolsky-Rosen (EPR) pairs is proposed, and a set of ordered N EPR pairs is used as a data block for sending secret message directly.
Journal ArticleDOI

Controlled order rearrangement encryption for quantum key distribution

TL;DR: In this paper, the order rearrangement operation in both parties is controlled by a prior shared control key, which is used repeatedly in a quantum key distribution session, so that Eve cannot steal useful information.
Journal ArticleDOI

Multi-step quantum secure direct communication using multi-particle Green–Horne–Zeilinger state

TL;DR: A multi-step quantum secure direct communication protocol using blocks of multi-particle maximally entangled state is proposed, which has the advantage of high efficiency and high source capacity.
Journal ArticleDOI

A scheme for secure direct communication using EPR pairs and teleportation

TL;DR: A novel scheme for secure direct communication between Alice and Bob is proposed, where there is no need for establishing a shared secret key and teleportation transmits Bob’s message without revealing any information to a potential eavesdropper.
Journal ArticleDOI

Secure Quantum Key Distribution Network with Bell States and Local Unitary Operations

TL;DR: A theoretical scheme for secure quantum key distribution network following the ideas in quantum dense coding, where the server of the network provides the service for preparing and measuring the Bell states, and the users encode the states with local unitary operations.
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