基于集体增强的无腔体分布式量子计算
摘要
presented a complete architecture for cavity-free quantum networking based on collective enhancement in Rydberg atom ensembles. The protocol exploits Rydberg blockade and phase-matched directional emission to eliminate optical cavities without sacrificing performance. The architecture comprises three steps: (i) local control-ensemble entanglement via Rydberg blockade with fidelity ; (ii) atom-photon conversion via Raman transitions, achieving directional emission () and single-node efficiency ; (iii) remote atom-atom entanglement via Hong-Ou-Mandel interference, producing Bell states with fidelity . With quantum memories enabling retry protocols, entanglement generation rates exceed Hz at 20 km separation. This cavity-free approach provides a practical and scalable pathway for distributed quantum computing and secure quantum communication.
引用
@article{arxiv.2603.14854,
title = {Cavity-Free Distributed Quantum Computing with Rydberg Ensembles via Collective Enhancement},
author = {Aman Ullah},
journal= {arXiv preprint arXiv:2603.14854},
year = {2026}
}