Xie Zhihao, Wang Guanyu, Guo Zehui, Li Zhenhua, Li Tao
Opt Express. 2023 Nov 6;31(23):37802-37817. doi: 10.1364/OE.504383.
Quantum entanglement between pairs of remote quantum memories (QMs) is a prerequisite for realizing many applications in quantum networks. Here, we present a heralded protocol for the parallel creation of quantum entanglement among multiple pairs of QMs placed in spatially separated nodes, where each QM, encoding a stationary qubit, couples to an optical cavity and deterministically interacts with single photons. Our protocol utilizes an entangled photon pair encoded in the high-dimensional time-bin degree of freedom to simultaneously entangle multiple QM pairs, and is efficient in terms of reducing the time consumption and photon loss during transmission. Furthermore, our approach can be extended to simultaneously support spatial-temporal multiplexing, as its success is heralded by the detection of single photons. These distinguishing features make our protocol particularly useful for long-distance quantum communication and large-scale quantum networks.
多对远程量子存储器(QM)之间的量子纠缠是在量子网络中实现许多应用的前提条件。在此,我们提出一种有 heralded 效应的协议,用于在空间上分离的节点中并行创建多对量子存储器之间的量子纠缠,其中每个编码一个静止量子比特的量子存储器与一个光学腔耦合,并与单光子进行确定性相互作用。我们的协议利用在高维时间-bin 自由度中编码的纠缠光子对来同时纠缠多对量子存储器对,并且在减少传输过程中的时间消耗和光子损失方面是高效的。此外,我们的方法可以扩展到同时支持时空复用,因为其成功是通过单光子的检测来 heralded 的。这些显著特征使得我们的协议对于长距离量子通信和大规模量子网络特别有用。