Opportunistic Entanglement Distribution for the Quantum Internet
May 01, 2019 Β· Declared Dead Β· π Scientific Reports
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Authors
Laszlo Gyongyosi, Sandor Imre
arXiv ID
1905.00258
Category
quant-ph: Quantum Computing
Cross-listed
cs.IT
Citations
70
Venue
Scientific Reports
Last Checked
5 months ago
Abstract
Quantum entanglement is a building block of the entangled quantum networks of the quantum Internet. A fundamental problem of the quantum Internet is entanglement distribution. Since quantum entanglement will be fundamental to any future quantum networking scenarios, the distribution mechanism of quantum entanglement is a critical and emerging issue in quantum networks. Here we define the method of opportunistic entanglement distribution for the quantum Internet. The opportunistic model defines distribution sets that are aimed to select those quantum nodes for which the cost function picks up a local minimum. The cost function utilizes the error patterns of the local quantum memories and the predictability of the evolution of the entanglement fidelities. Our method provides efficient entanglement distributing with respect to the actual statuses of the local quantum memories of the node pairs. The model provides an easily-applicable, moderate-complexity solution for high-fidelity entanglement distribution in experimental quantum Internet scenarios.
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