Purifying two quantum links only pays off when their fidelities differ by less than about 0.076, so under realistic memory decay most purification attempts should be skipped.
On the analysis of quantum repeater chains with sequential swaps
2 Pith papers cite this work, alongside 2 external citations. Polarity classification is still indexing.
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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.
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To Purify or Not to Purify: Entanglement Purification under Input Fidelity Asymmetry in Quantum Networks
Purifying two quantum links only pays off when their fidelities differ by less than about 0.076, so under realistic memory decay most purification attempts should be skipped.
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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.