Efficient Multiparty Entanglement Distribution with DODAG-X Protocol

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Main Authors: Negrin, Roberto, Dirnegger, Nicolas, Munizzi, William, Talukdar, Jugal, Narang, Prineha
Format: Preprint
Published: 2024
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author Negrin, Roberto
Dirnegger, Nicolas
Munizzi, William
Talukdar, Jugal
Narang, Prineha
author_facet Negrin, Roberto
Dirnegger, Nicolas
Munizzi, William
Talukdar, Jugal
Narang, Prineha
contents In this work we introduce the DODAG-X protocol for multipartite entanglement distribution in quantum networks. Leveraging the power of Destination Oriented Directed Acyclic Graphs (DODAGs), our protocol optimizes resource consumption and enhances robustness to noise in dynamic and lossy networks. Implementing a variation on the X-protocol within the DODAG, we minimize graph verification and path-finding calculations, significantly reducing computational overhead when compared to other entanglement routing schemes. Additionally, our benchmarks on grid lattice and small-world topologies reveal substantial measurement reduction compared to existing protocols. We demonstrate the success of DODAG-X for generating maximal three-party entanglement in arbitrary networks, and describe the potential for scaling to generic $n$-party entanglement. The DODAG-X protocol provides a scalable and efficient solution for entanglement routing, advancing current techniques for reliable quantum communication and network applications.
format Preprint
id arxiv_https___arxiv_org_abs_2408_07118
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Efficient Multiparty Entanglement Distribution with DODAG-X Protocol
Negrin, Roberto
Dirnegger, Nicolas
Munizzi, William
Talukdar, Jugal
Narang, Prineha
Quantum Physics
Information Theory
Mathematical Physics
In this work we introduce the DODAG-X protocol for multipartite entanglement distribution in quantum networks. Leveraging the power of Destination Oriented Directed Acyclic Graphs (DODAGs), our protocol optimizes resource consumption and enhances robustness to noise in dynamic and lossy networks. Implementing a variation on the X-protocol within the DODAG, we minimize graph verification and path-finding calculations, significantly reducing computational overhead when compared to other entanglement routing schemes. Additionally, our benchmarks on grid lattice and small-world topologies reveal substantial measurement reduction compared to existing protocols. We demonstrate the success of DODAG-X for generating maximal three-party entanglement in arbitrary networks, and describe the potential for scaling to generic $n$-party entanglement. The DODAG-X protocol provides a scalable and efficient solution for entanglement routing, advancing current techniques for reliable quantum communication and network applications.
title Efficient Multiparty Entanglement Distribution with DODAG-X Protocol
topic Quantum Physics
Information Theory
Mathematical Physics
url https://arxiv.org/abs/2408.07118