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Design and analysis of communication protocols for quantum repeater networks

机译:量子中继器网络通信协议的设计与分析

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摘要

We analyze how the performance of a quantum-repeater network depends on the protocol employed to distribute entanglement, and we find that the choice of repeater-to-repeater link protocol has a profound impact on entanglement-distribution rate as a function of hardware parameters. We develop numerical simulations of quantum networks using different protocols, where the repeater hardware is modeled in terms of key performance parameters, such as photon generation rate and collection efficiency. These parameters are motivated by recent experimental demonstrations in quantum dots, trapped ions, and nitrogen-vacancy centers in diamond. We find that a quantum-dot repeater with the newest protocol ('MidpointSource') delivers the highest entanglement-distribution rate for typical cases where there is low probability of establishing entanglement per transmission, and in some cases the rate is orders of magnitude higher than other schemes. Our simulation tools can be used to evaluate communication protocols as part of designing a large-scale quantum network.
机译:我们分析了量子中继器网络的性能如何取决于所采用的分配纠缠协议,并且发现中继器到中继器链路协议的选择对纠缠分配率(取决于硬件参数)具有深远的影响。我们使用不同的协议开发量子网络的数值模拟,其中中继器硬件是根据关键性能参数(例如光子生成速率和收集效率)建模的。这些参数是由最近在金刚石中的量子点,捕获的离子和氮空位中心的实验演示所激发的。我们发现具有最新协议('MidpointSource')的量子点中继器在典型情况下提供最高的纠缠分布速率,在典型情况下,每次传输建立纠缠的可能性很小,在某些情况下,速率比其他方案。我们的仿真工具可用于评估通信协议,这是设计大规模量子网络的一部分。

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