论文标题

在带有纠缠净化的量子开关的容量区域上

On the Capacity Region of a Quantum Switch with Entanglement Purification

论文作者

Panigrahy, Nitish K., Vasantam, Thirupathaiah, Towsley, Don, Tassiulas, Leandros

论文摘要

量子开关被设想为未来纠缠分布网络的组成部分。他们可以通过执行诸如纠缠交换和纠缠净化之类的量子操作来为最终用户提供高质量的纠缠分配服务。在这项工作中,我们表征了这种量子开关在嘈杂的通道传输和不完善量子操作下的容量区域。我们表达了能力区域,是通道和网络参数(链接和纠缠掉期成功概率),纠缠净化收益率和应用级别参数(目标保真度阈值)的函数。特别是,我们提供了必要的条件来验证一组请求率是否属于开关的容量区域。我们使用这些条件来通过解决一组线性优化问题来找到最大可实现的端到端用户纠缠生成吞吐量。我们制定了最大重量调度策略,并证明该策略可以为所有可行的请求到达率稳定开关。当我们制定调度策略时,我们还为计算不同类别的纯化协议的条件收益分布而产生了新的结果。从数值实验中,我们发现执行链路级纠缠净化后,然后进行纠缠掉期提供了更大的容量区域,而不是进行纠缠掉期,然后进行端到端的纠缠净化。这项工作中获得的结论可以为随后的量子开关设计提供有用的指南。

Quantum switches are envisioned to be an integral component of future entanglement distribution networks. They can provide high quality entanglement distribution service to end-users by performing quantum operations such as entanglement swapping and entanglement purification. In this work, we characterize the capacity region of such a quantum switch under noisy channel transmissions and imperfect quantum operations. We express the capacity region as a function of the channel and network parameters (link and entanglement swap success probability), entanglement purification yield and application level parameters (target fidelity threshold). In particular, we provide necessary conditions to verify if a set of request rates belong to the capacity region of the switch. We use these conditions to find the maximum achievable end-to-end user entanglement generation throughput by solving a set of linear optimization problems. We develop a max-weight scheduling policy and prove that the policy stabilizes the switch for all feasible request arrival rates. As we develop scheduling policies, we also generate new results for computing the conditional yield distribution of different classes of purification protocols. From numerical experiments, we discover that performing link-level entanglement purification followed by entanglement swaps provides a larger capacity region than doing entanglement swaps followed by end-to-end entanglement purification. The conclusions obtained in this work can yield useful guidelines for subsequent quantum switch designs.

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