arXiv · 2609.25571
A scalable entanglement distribution framework for hybrid quantum networks
Abstract
The realization of a scalable quantum network (QN) hinges on the efficient distribution of entanglement across heterogeneous hardware platforms. While traditional QN frameworks are often restricted to single-encoding schemes, relying exclusively on either discrete (DV) or continuous (CV) variables, such segregated architectures limit the capacity and interoperability of large-scale systems. Here, we propose a scalable hybrid entanglement distribution scheme that bridges these domains by mapping hybrid entanglement swapping and concentration at DV-CV interfaces onto a unified set of series and parallel graph rules. We demonstrate that our hybrid approach exhibits a potential performance advantage over traditional point-to-point generation of maximally entangled states, achieving enhanced end-to-end entanglement within series-parallel topologies. These results provide a robust theoretical foundation for designing resource-efficient, interpretable architectures for the future quantum internet.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yaqi Zhao, Kan He, Jinchuan Hou, Yongtao Zhang, Nicolò Lo Piparo, Xiangyi Meng. 2026-09-22. A scalable entanglement distribution framework for hybrid quantum networks. https://arxiv.org/abs/2609.25571
Cite the original work for its findings. Save a collection to share your selection of sources.