FENDI:在量子互联网中实现高保真纠缠分发

IF 3 3区 计算机科学 Q2 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Huayue Gu;Zhouyu Li;Ruozhou Yu;Xiaojian Wang;Fangtong Zhou;Jianqing Liu;Guoliang Xue
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引用次数: 0

摘要

量子网络在远程节点之间分配量子纠缠,是安全通信、量子传感和分布式量子计算等许多应用的关键。本文探讨了多跳量子中继网络中吞吐量与纠缠分布质量之间的基本权衡。与现有的旨在启发式地最大化纠缠分布率(EDR)和/或纠缠保真度的工作相比,我们的目标是表征可实现的最大最坏情况保真度,同时满足任意量子节点对之间可实现的最大期望EDR的界限。这种表征将提供量子网络可实现性能区域的基本边界,有助于量子网络拓扑、协议和应用的设计。然而,这个任务是非常重要的,我们将证明它是np困难的。我们的主要贡献是一个完全多项式时间近似方案,以在严格的预期EDR范围内近似可实现的最坏情况保真度,结合最优保真度不确定的EDR最大化公式和最坏情况各向同性噪声模型。EDR和保真度保证可以通过带有量子存储器的后选择和存储协议来实现。通过开发一个离散时间量子网络模拟器,对网络的特征性能区域(近似帕累托边界)进行了仿真,并证明设计的协议可以达到该性能区域,而现有协议存在很大差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FENDI: Toward High-Fidelity Entanglement Distribution in the Quantum Internet
A quantum network distributes quantum entanglements between remote nodes, and is key to many applications in secure communication, quantum sensing and distributed quantum computing. This paper explores the fundamental trade-off between the throughput and the quality of entanglement distribution in a multi-hop quantum repeater network. Compared to existing work which aims to heuristically maximize the entanglement distribution rate (EDR) and/or entanglement fidelity, our goal is to characterize the maximum achievable worst-case fidelity, while satisfying a bound on the maximum achievable expected EDR between an arbitrary pair of quantum nodes. This characterization will provide fundamental bounds on the achievable performance region of a quantum network, which can assist with the design of quantum network topology, protocols and applications. However, the task is highly non-trivial and is NP-hard as we shall prove. Our main contribution is a fully polynomial-time approximation scheme to approximate the achievable worst-case fidelity subject to a strict expected EDR bound, combining an optimal fidelity-agnostic EDR-maximizing formulation and a worst-case isotropic noise model. The EDR and fidelity guarantees can be implemented by a post-selection-and-storage protocol with quantum memories. By developing a discrete-time quantum network simulator, we conduct simulations to show the characterized performance region (the approximate Pareto frontier) of a network, and demonstrate that the designed protocol can achieve the performance region while existing protocols exhibit a substantial gap.
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来源期刊
IEEE/ACM Transactions on Networking
IEEE/ACM Transactions on Networking 工程技术-电信学
CiteScore
8.20
自引率
5.40%
发文量
246
审稿时长
4-8 weeks
期刊介绍: The IEEE/ACM Transactions on Networking’s high-level objective is to publish high-quality, original research results derived from theoretical or experimental exploration of the area of communication/computer networking, covering all sorts of information transport networks over all sorts of physical layer technologies, both wireline (all kinds of guided media: e.g., copper, optical) and wireless (e.g., radio-frequency, acoustic (e.g., underwater), infra-red), or hybrids of these. The journal welcomes applied contributions reporting on novel experiences and experiments with actual systems.
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