arXiv · 2609.38804
Entangling Atomic Quantum Memories Using High-Order Modulated Coherent States
Abstract
High-order coherent-state modulation and collective midpoint measurements enable multi-ebit entanglement distribution between cavity-coupled atomic memories. An SRM-inspired 16-QAM receiver achieves $1.75$ ebits per network mode use at $0.5$~dB end-to-end loss, exceeding single-qubit-per-mode benchmarks by $5.8$~dB and lying $3.8$~dB below the half-link capacity bound. The advantage persists for per-interface loss below $0.2$~dB and calibrated phase errors below $0.2π$. For 4-QAM, an optimized POVM with twice as many outcomes raises the achievable rate by $4.0\%$, revealing measurement-design headroom.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chaohan Cui, Prajit Dhara, Saikat Guha. 2026-10-01. Entangling Atomic Quantum Memories Using High-Order Modulated Coherent States. https://arxiv.org/abs/2609.38804
Cite the original work for its findings. Save a collection to share your selection of sources.