English

Fidelity-Guaranteed Entanglement Routing with Distributed Purification Planning

Networking and Internet Architecture 2026-05-04 v1 Quantum Physics

Abstract

Many quantum-network applications require end-to-end Bell pairs whose fidelity exceeds a request-specific threshold, but existing entanglement routing algorithms either optimize only throughput without regard for fidelity or enforce fidelity guarantees using centralized controllers with global link-state knowledge. We present Q-GUARD, an online entanglement routing algorithm that enforces per-request fidelity thresholds within a distributed protocol model in which nodes exchange link-state information only with their kk-hop neighbors. After link outcomes are realized in each slot, Q-GUARD builds per-link purification cost tables from realized Bell pairs, allocates per-hop fidelity targets using a Werner-state equal-split rule, and selects between candidate path segments using a segment-local expected-goodput (EXG) metric that jointly accounts for swap success, purification overhead, and resource availability. We also introduce Q-GUARD-WS, an extension that exploits per-link hardware quality estimates to allocate purification effort non-uniformly across hops. On synthetic 100-node topologies with heterogeneous link fidelity and stochastic BBPSSW purification, Q-GUARD raises the qualified success rate from under 20\% to over 85\% on 4-hop paths and nearly doubles the qualified service radius in Euclidean distance relative to throughput-only and naive-purification baselines, while Q-GUARD-WS provides additional throughput gains under high hardware heterogeneity.

Keywords

Cite

@article{arxiv.2605.00246,
  title  = {Fidelity-Guaranteed Entanglement Routing with Distributed Purification Planning},
  author = {Anthony Gatti and Anoosha Fayyaz and Prashant Krishnamurthy and Kaushik P. Seshadreesan and Amy Babay},
  journal= {arXiv preprint arXiv:2605.00246},
  year   = {2026}
}

Comments

11 pages, 6 figures. Submitted to IEEE QCE 2026

R2 v1 2026-07-01T12:44:33.235Z