Multi-hop fault-tolerant teleportation of arbitrary two-qubit states with cluster channel

TianTian Meng, YuZhen Wei, Hong Chen, Xu Huang, Min Jiang
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Abstract

In this paper, we propose one multi-hop fault-tolerant teleportation scheme leveraging non-maximally entangled cluster states as the quantum channel, which is crucial for efficient transmission over extended distances. During quantum communication, environmental noise may introduce operational errors between adjacent nodes. In order to uphold the maximum transmission efficiency, error correction operations are exclusively conducted by the ultimate receiver rather than intermediate nodes. Error outcomes from each node can be synchronously relayed to the receiver via the classical channel, effectively diminishing the delays and operational intricacies, thereby significantly bolstering the transmission efficiency. Moreover, we utilize the Quirk simulation software to simulate the teleportation process.
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利用集群信道实现任意双量子比特态的多跳容错远程传输
本文提出了一种多跳容错远程传输方案,利用非最大纠缠簇态作为量子信道,这对于远距离高效传输至关重要。在量子通信过程中,环境噪声可能会在相邻节点之间引入操作错误。为了保持最大的传输效率,纠错操作完全由最终接收器而非中间节点进行。各节点的纠错结果可通过经典信道同步传递给接收器,从而有效地减少了延迟和操作的复杂性,大大提高了传输效率。此外,我们还利用 Quirk 仿真软件来模拟远距离传输过程。
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