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A Throughput Optimal Scheduling Policy for a Quantum Switch

Quantum Physics 2022-06-08 v1 Performance

Abstract

We study a quantum switch that creates shared end-to-end entangled quantum states to multiple sets of users that are connected to it. Each user is connected to the switch via an optical link across which bipartite Bell-state entangled states are generated in each time-slot with certain probabilities, and the switch merges entanglements of links to create end-to-end entanglements for users. One qubit of an entanglement of a link is stored at the switch and the other qubit of the entanglement is stored at the user corresponding to the link. Assuming that qubits of entanglements of links decipher after one time-slot, we characterize the capacity region, which is defined as the set of arrival rates of requests for end-to-end entanglements for which there exists a scheduling policy that stabilizes the switch. We propose a Max-Weight scheduling policy and show that it stabilizes the switch for all arrival rates that lie in the capacity region. We also provide numerical results to support our analysis.

Keywords

Cite

@article{arxiv.2206.03205,
  title  = {A Throughput Optimal Scheduling Policy for a Quantum Switch},
  author = {Thirupathaiah Vasantam and Don Towsley},
  journal= {arXiv preprint arXiv:2206.03205},
  year   = {2022}
}

Comments

arXiv admin note: text overlap with arXiv:2106.00831

R2 v1 2026-06-24T11:41:50.088Z