论文标题
全光量量子中继器,用于多部分纠缠生成
All-Photonic Quantum Repeater for Multipartite Entanglement Generation
论文作者
论文摘要
量子网络应用等分布式量子计算和量子秘密共享提供了一个有希望的未来网络,配备了量子资源。长距离的纠缠产生和分布对于在完全连接的网络中使用量子技术至关重要,并且不可避免。长距离纠缠的两分纠缠的分布已经取得了一些进展,而多部分纠缠在长距离上的分布仍未得到解决。在这里,我们报告了一种二维量子中继器协议,用于在长距离内通过全光框架生成多部分纠缠,以填补这一空白。提出的协议的产量显示了各种网络用户下的长传输距离。随着扩大用户数量的提高效率和灵活性,我们预计我们的协议将来可以作为量子网络的重要组成部分。
Quantum network applications like distributed quantum computing and quantum secret sharing present a promising future network equipped with quantum resources. Entanglement generation and distribution over long distances is critical and unavoidable to utilize quantum technology in a fully-connected network. The distribution of bipartite entanglement over long distances has seen some progresses, while the distribution of multipartite entanglement over long distances remains unsolved. Here we report a two-dimensional quantum repeater protocol for the generation of multipartite entanglement over long distances with all-photonic framework to fill this gap. The yield of the proposed protocol shows long transmission distance under various numbers of network users. With the improved efficiency and flexibility of extending the number of users, we anticipate that our protocol can work as a significant building block for quantum networks in the future.