论文标题

使用基于卫星的量子网络的最佳纠缠分布

Optimal Entanglement Distribution using Satellite Based Quantum Networks

论文作者

Panigrahy, Nitish K., Dhara, Prajit, Towsley, Don, Guha, Saikat, Tassiulas, Leandros

论文摘要

Recent technological advancements in satellite based quantum communication has made it a promising technology for realizing global scale quantum networks.由于与基于地面的纤维通信相比,由于损失距离的缩放更好,卫星量子通信可以在地理上长距离分离的地面站之间分布高质量的量子纠缠。这项工作着重于使用一组轨道卫星组成的一组地面站的两部分纠缠的最佳分布。特别是,我们表征了最佳的卫星到地面电台传输调度策略,相对于在卫星和地面站的各种资源限制的总纠缠分配率方面。我们将最佳的传输调度问题视为整数线性编程问题,并在某些特定方案中有效地解决它。我们的框架也可以用作测量其他潜在传输计划策略的性能的基准工具。

Recent technological advancements in satellite based quantum communication has made it a promising technology for realizing global scale quantum networks. Due to better loss distance scaling compared to ground based fiber communication, satellite quantum communication can distribute high quality quantum entanglements among ground stations that are geographically separated at very long distances. This work focuses on optimal distribution of bipartite entanglements to a set of pair of ground stations using a constellation of orbiting satellites. In particular, we characterize the optimal satellite-to-ground station transmission scheduling policy with respect to the aggregate entanglement distribution rate subject to various resource constraints at the satellites and ground stations. We cast the optimal transmission scheduling problem as an integer linear programming problem and solve it efficiently for some specific scenarios. Our framework can also be used as a benchmark tool to measure the performance of other potential transmission scheduling policies.

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