论文标题
量子网络中的数据包切换:量子互联网的路径
Packet Switching in Quantum Networks: A Path to Quantum Internet
论文作者
论文摘要
具有数千个节点的大规模量子网络需要可扩展的网络协议和物理硬件才能实现。在这项工作中,我们将数据包切换作为一种新的范式,用于未来和近期量子网络中的量子数据传输。我们提出了一种经典的量词数据框架结构,并探讨了框架生成和处理方法。此外,我们为量子重新配置的光学加载多路复用器提供了概念设计,以实现所提出的传输方案。数据包切换允许为下一代Internet进行通用设计,其中经典数据和量子数据共享相同的网络协议和基础架构。在这个新的量子网络范式中,与量子密钥分布一样,纠缠分布是构建在量子网络之上的应用程序,而不是专门为这些目的而设计的网络。为了分析网络模型,我们模拟了量子数据包切换的可行性,用于一些量子密钥和纠缠分布的初步模型。最后,我们讨论如何将模型与其他网络模型集成到实现量子互联网的实现。
Large-scale quantum networks with thousands of nodes require scalable network protocols and physical hardware to realize. In this work, we introduce packet switching as a new paradigm for quantum data transmission in both future and near-term quantum networks. We propose a classical-quantum data frame structure and explore methods of frame generation and processing. Further, we present conceptual designs for a quantum reconfigurable optical add-drop multiplexer to realize the proposed transmission scheme. Packet switching allows for a universal design for a next generation Internet where classical and quantum data share the same network protocols and infrastructure. In this new quantum networking paradigm, entanglement distribution, as with quantum key distribution, is an application built on top of the quantum network rather than as a network designed especially for those purposes. For analysis of the network model, we simulate the feasibility of quantum packet switching for some preliminary models of quantum key and entanglement distribution. Finally, we discuss how our model can be integrated with other network models toward a realization of a quantum Internet.