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Routing protocol for wireless quantum multi-hop mesh backbone network based on partially entangled GHZ state

机译:基于部分纠缠GHZ状态的无线量子多跳网骨干网路由协议

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Quantum multi-hop teleportation is important in the field of quantum communication. In this study, we propose a quantum multi-hop communication model and a quantum routing protocol with multi-hop teleportation for wireless mesh backbone networks. Based on an analysis of quantum multi-hop protocols, a partially entangled Greenberger-Horne-Zeilinger (GHZ) state is selected as the quantum channel for the proposed protocol. Both quantum and classical wireless channels exist between two neighboring nodes along the route. With the proposed routing protocol, quantum information can be transmitted hop by hop from the source node to the destination node. Based on multi-hop teleportation based on the partially entangled GHZ state, a quantum route established with the minimum number of hops. The difference between our routing protocol and the classical one is that in the former, the processes used to find a quantum route and establish quantum channel entanglement occur simultaneously. The Bell state measurement results of each hop are piggybacked to quantum route finding information. This method reduces the total number of packets and the magnitude of air interface delay. The deduction of the establishment of a quantum channel between source and destination is also presented here. The final success probability of quantum multi-hop teleportation in wireless mesh backbone networks was simulated and analyzed. Our research shows that quantum multi-hop teleportation in wireless mesh backbone networks through a partially entangled GHZ state is feasible.
机译:量子多跳隐形传态在量子通信领域很重要。在这项研究中,我们提出了一种用于无线网状骨干网的量子多跳通信模型和一种具有多跳远距传输的量子路由协议。在对量子多跳协议进行分析的基础上,选择了部分纠缠的格林伯格-霍恩-泽林格(GHZ)态作为所提出协议的量子通道。量子无线信道和经典无线信道都存在于沿路径的两个相邻节点之间。利用提出的路由协议,量子信息可以从源节点到目的节点逐跳地传输。基于基于部分纠缠GHZ状态的多跳隐形传态,建立了具有最小跳数的量子路由。我们的路由协议与经典路由协议之间的区别在于,在前一种协议中,用于找到量子路由和建立量子通道纠缠的过程是同时发生的。每个跃点的贝尔状态测量结果都背负于量子路由发现信息。这种方法减少了数据包的总数和空中接口延迟的幅度。此处还介绍了在源与目的地之间建立量子通道的推论。模拟和分析了无线网状骨干网中量子多跳传送的最终成功概率。我们的研究表明,通过部分纠缠的GHZ状态在无线网状骨干网中进行量子多跳传送是可行的。

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