Link Configuration for Fidelity-Constrained Entanglement Routing in Quantum Networks
Qiaolun Zhang, Nicola Di Cicco, Memedhe Ibrahimi, Raul C. Almeida, Alberto Gatto, Raouf Boutaba, Massimo Tornatore
Abstract
Entanglement routing (ER) in quantum networks must guarantee entanglement fidelity, a property that is crucial for applications such as quantum key distribution, quantum computation, and quantum sensing. Conventional ER approaches assume that network links can only generate entanglements with a fixed fidelity, and then they rely on purification to improve end-to-end fidelities. However, recent advances in entanglement generation technologies show that quantum links can be configured by choosing among different fidelity/entanglement-rate combinations (defined in this paper as link configurations), hence enabling a more flexible assignment of quantum-network resources for meeting specific application requirements. To exploit this opportunity, we introduce the problem of link configuration for fidelity-constrained routing and purification (LC-FCRP) in Quantum Networks. We first formulate a simplified FCRP version as a Mixed Integer Linear Programming (MILP) model, where the link fidelity can be adjusted within a finite set. Then, to explore the full space of possible link configurations, we propose a link configuration algorithm based on a novel shortest-path-based fidelity determination (SPFD) algorithm w/o Bayesian Optimization, which can be applied on top of any existing ER algorithm. Numerical results demonstrate that link configuration improves the acceptance ratio of existing ER algorithms by 87%.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 3d1a94a2-0296-4ac9-92e9-2cbfe7047739Builds on5
- Concurrent Entanglement Routing for Quantum Networks: Model and DesignsShouqian Shi, Chen QianSIGCOMM 2020 · 187 citations
- Redundant Entanglement Provisioning and Selection for Throughput Maximization in Quantum NetworksYangming Zhao, Chunming QiaoINFOCOM 2021 · 118 citations
- E2E Fidelity Aware Routing and Purification for Throughput Maximization in Quantum NetworksYangming Zhao, Gongming Zhao, Chunming QiaoINFOCOM 2022 · 100 citations
- Opportunistic Routing in Quantum NetworksAli Farahbakhsh, Chen FengINFOCOM 2022 · 52 citations
- A Quantum Overlay Network for Efficient Entanglement DistributionShahrooz Pouryousef, Nitish K. Panigrahy, Don TowsleyINFOCOM 2023 · 34 citations
Related papers
- On the Capacity Region of a Quantum Switch with Entanglement PurificationNitish K. Panigrahy, Thirupathaiah Vasantam, Don Towsley, Leandros TassiulasINFOCOM 2023 · 40 citations
- Fidelity-Threshold Online Path Selection and Request Scheduling in Quantum NetworksZhuoyue Chen, Kechao Cai, Wenkang Cen, Jinbei Zhang et al.INFOCOM 2026
- LinkSelFiE: Link Selection and Fidelity Estimation in Quantum NetworksMaoli Liu, Zhuohua Li, Xuchuang Wang, John C. S. LuiINFOCOM 2024 · 16 citations
- Quantum BGP with Online Path Selection via Network BenchmarkingMaoli Liu, Zhuohua Li, Kechao Cai, Jonathan Allcock et al.INFOCOM 2024 · 22 citations
- Minerva: Enhancing Quantum Network Performance for High-Fidelity Multimedia TransmissionTingting Li, Ziming Zhao, Jianwei YinACM MM 2024 · 9 citations
