Entangled quantum communication is advancing rapidly, with laboratory and metropolitan testbeds under development, but to date there is no unifying Quantum Internet architecture. We propose a Quantum Internet architecture centered around the Quantum Recursive Network Architecture (QRNA), using RuleSet-based connections established using a two-pass connection setup. Scalability and internetworking (for both technological and administrative boundaries) are achieved using recursion in naming and connection control. In the near term, this architecture will support end-to-end, two-party entanglement on minimal hardware, and it will extend smoothly to multi-party entanglement and the use of quantum error correction on advanced hardware in the future. For a network internal gateway protocol, we recommend (but do not require) qDijkstra with seconds per Bell pair as link cost for routing; the external gateway protocol is designed to build recursively. The strength of our architecture is shown by assessing extensibility and demonstrating how robust protocol operation can be confirmed using the RuleSet paradigm.
翻译:封闭的量子通信正在迅速发展,正在开发实验室和大都市测试台,但迄今为止还没有统一的量子互联网结构。 我们提议以量子互联网结构为中心,以量子回归网络架构(QRNA)为中心,使用使用双通道连接装置建立的基于规则的连接。 使用在命名和连接控制中的循环来实现( 技术和行政边界) 缩放和互联网工作( 包括技术和行政边界) 。 在近期内, 这一架构将支持最小硬件的端对端、 两方纠缠, 并将顺利扩展到多党纠缠以及未来在先进硬件上使用量子错误校正。 对于网络内部网关协议,我们建议( 但并不要求) qDijkstra, 以每贝尔对面数秒作为连接线路的成本; 外部网关协议的设计是建立连线。 通过评估可扩展性并演示如何用规则模式确认强有力的协议操作来显示我们的架构的强度。