arXiv Open Access 2026

Asynchronous Routing for Multipartite Entanglement in Quantum Networks

Chenliang Tian Zebo Yang Raj Jain Ramana Kompella Reza Nejabati +4 lainnya
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Abstrak

In quantum networks, one way to communicate is to distribute entanglements through swapping at intermediate nodes. Most existing work primarily aims to create efficient two-party end-to-end entanglement over long distances. However, some scenarios also require remote multipartite entanglement for applications such as quantum secret sharing and multi-party computation. Our previous study improved end-to-end entanglement rates using an asynchronous, tree-based routing scheme that relies solely on local knowledge of entanglement links, conserving unused entanglement and avoiding synchronous operations. This article extends this approach to multipartite entanglements, particularly the three-party Greenberger-Horne-Zeilinger (GHZ) states. It shows that our asynchronous protocol outperforms traditional synchronous methods in entanglement rates, especially as coherence times increase. This approach can also be extended to four-party and larger multipartite GHZ states, highlighting the effectiveness and adaptability of asynchronous routing for multipartite scenarios across various network topologies.

Topik & Kata Kunci

Penulis (9)

C

Chenliang Tian

Z

Zebo Yang

R

Raj Jain

R

Ramana Kompella

R

Reza Nejabati

E

Eneet Kaur

A

Aiman Erbad

M

Mounir Hamdi

M

Mohamed Abdallah

Format Sitasi

Tian, C., Yang, Z., Jain, R., Kompella, R., Nejabati, R., Kaur, E. et al. (2026). Asynchronous Routing for Multipartite Entanglement in Quantum Networks. https://arxiv.org/abs/2603.27551

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Tahun Terbit
2026
Bahasa
en
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arXiv
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Open Access ✓