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Leveraging Internet Principles to Build a Quantum Network

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arxiv 2410.08980 v2 pith:555F2SDT submitted 2024-10-11 quant-ph cs.NI

classification quant-phcs.NI
keywords quantuminternetarchitectureclassicalnetworkprotocolsabstractactive
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Designing an operational architecture for the Quantum Internet is challenging in light of both fundamental limits imposed by physics laws and technological constraints. Here, we propose a method to abstract away most of the quantum-specific elements and formulate a best-effort quantum network architecture based on packet switching, akin to that of the classical Internet. This reframing provides an opportunity to exploit the many available and well-understood protocols within the Internet context. As an illustration, we tailor and adapt classical congestion control and active queue management protocols to quantum networks, employing an architecture wherein quantum end and intermediate nodes effectively regulate demand and resource utilization, respectively. Results show that these classical networking tools can be effective in managing quantum memory decoherence and maintaining end-to-end fidelity around a target value.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Comprehensive Protocol Stack for Quantum Networks with a Global Entanglement Module

    quant-ph 2025-09 conditional novelty 5.0 of 10

    A quantum network protocol stack with a Global Entanglement Module, where simulations show a scoring-based adaptive strategy improves entanglement generation rates by about 20% over fixed-tree baselines.

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