An Implementation and Analysis of a Practical Quantum Link Architecture Utilizing Entangled Photon Sources
May 16, 2024 Β· Declared Dead Β· π 2024 International Conference on Quantum Communications, Networking, and Computing (QCNC)
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Authors
Kento Samuel Soon, Michal HajduΕ‘ek, Shota Nagayama, Naphan Benchasattabuse, Kentaro Teramoto, Ryosuke Satoh, Rodney Van Meter
arXiv ID
2405.09861
Category
quant-ph: Quantum Computing
Cross-listed
cs.NI
Citations
3
Venue
2024 International Conference on Quantum Communications, Networking, and Computing (QCNC)
Last Checked
5 months ago
Abstract
Quantum repeater networks play a crucial role in distributing entanglement. Various link architectures have been proposed to facilitate the creation of Bell pairs between distant nodes, with entangled photon sources emerging as a primary technology for building quantum networks. Our work advances the Memory-Source-Memory (MSM) link architecture, addressing the absence of practical implementation details. We conduct numerical simulations using the Quantum Internet Simulation Package (QuISP) to analyze the performance of the MSM link and contrast it with other link architectures. We observe a saturation effect in the MSM link, where additional quantum resources do not affect the Bell pair generation rate of the link. By introducing a theoretical model, we explain the origin of this effect and characterize the parameter region where it occurs. Our work bridges theoretical insights with practical implementation, which is crucial for robust and scalable quantum networks.
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