quantum information

Dynamic Entanglement Distribution for Multi-User and Multi-Protocol Quantum Networking

arXiv:2607.15262

summary

The paper demonstrates a metropolitan‑scale quantum network that uses a reconfigurable optical add‑drop multiplexer to dynamically distribute polarisation‑entangled photon pairs to six users, supporting various mesh configurations and multiple quantum protocols.

Abstract

Dynamic entanglement distribution is a key requirement for scalable, multi-user and multi-protocol quantum networks. We demonstrate a metropolitan-scale entanglement-based quantum communication network enabled by a quantum reconfigurable optical add-drop multiplexer (q-ROADM), which dynamically distributes polarisation-entangled photon pairs from a broadband source to six users over deployed campus and metropolitan fibre. The network supports programmable full-mesh, partial-mesh and sliced sub-network configurations, enabling flexible allocation of entanglement resources according to link condition and service requirement. We demonstrate stable six-user full-mesh operation over more than 150 hours, compare full-mesh and time-shared partial-mesh strategies under different source and detector conditions, and realise quantum network slicing with optional/additional interconnection links. We also show that the same infrastructure can support different quantum protocols by showcasing Secure Inaugural Authentication-Transfer (SIAT) combined with Network flooding over multiple paths to improve the security of onboarding a new user. These results demonstrate a q-ROADM-enabled entanglement distribution architecture as a novel route towards reconfigurable, service-oriented quantum networking over optical fibre infrastructure.

Topics & keywords

#quantum networking#entanglement distribution#optical fiber#reconfigurable add‑drop multiplexer#multi‑user#network slicingpolarisation‑entangled photon pairsq‑ROADMfull‑mesh operationSIAT protocolmetropolitan fiberdynamic resource allocation
Dynamic Entanglement Distribution for Multi-User and Multi-Protocol Quantum Networking · wovepaper