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Topology adaption for the quantum Internet

机译:量子互联网的拓扑适应

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In the quantum repeater networks of the quantum Internet, the varying stability of entangled quantum links makes dynamic topology adaption an emerging issue. Here we define an efficient topology adaption method for quantum repeater networks. The model assumes the random failures of entangled links and several parallel demands from legal users. The shortest path defines a set of entangled links for which the probability of stability is above a critical threshold. The scheme is utilized in a base-graph of the overlay quantum network to provide an efficient shortest path selection for the demands of all users of the network. We study the problem of entanglement assignment in a quantum repeater network, prove its computational complexity, and show an optimization procedure. The results are particularly convenient for future quantum networking, quantum Internet, and experimental long-distance quantum communications.
机译:在量子互联网的量子中继器网络中,纠缠量子链路的变化稳定性使动态拓扑适应成为新兴问题。 在这里,我们为量子中继器网络定义了一种有效的拓扑适应方法。 该模型假设纠缠链接的随机失败以及来自法律用户的几个并行需求。 最短路径定义了一组缠绕链路,稳定性的概率高于临界阈值。 该方案用于覆盖量子网络的基础图中,为网络的所有用户的需求提供有效的最短路径选择。 我们研究Quantum Reveater网络中的纠缠分配问题,证明了其计算复杂性,并显示了优化过程。 结果对于未来量子网络,量子互联网和实验性长距离量子通信特别方便。

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