Proposes a heterogeneous quantum repeater network architecture using recursive designs and RuleSets with a new bridging building block, but states that full-scale resource trade-off analysis remains future work.
Available: https://arxiv.org/abs/2305.00708
3 Pith papers cite this work. Polarity classification is still indexing.
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UNVERDICTED 3representative citing papers
The authors introduce the LHD protocol for entanglement distribution under imperfect conditions and report via simulation that it outperforms some prior protocols against a blind entanglement baseline.
NetSquid simulations characterize how memory quality, noise, distances, switches, purification and error correction affect end-to-end fidelity in entanglement-based quantum networks and yield design guidelines.
citing papers explorer
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Resource Management in Heterogeneous Quantum Repeater Networks
Proposes a heterogeneous quantum repeater network architecture using recursive designs and RuleSets with a new bridging building block, but states that full-scale resource trade-off analysis remains future work.
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Entanglement distribution protocols under imperfect fidelity and quantum memory conditions
The authors introduce the LHD protocol for entanglement distribution under imperfect conditions and report via simulation that it outperforms some prior protocols against a blind entanglement baseline.
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Simulation of entanglement based quantum networks for performance characterization
NetSquid simulations characterize how memory quality, noise, distances, switches, purification and error correction affect end-to-end fidelity in entanglement-based quantum networks and yield design guidelines.