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A Nonblocking Multistage Switching Network for Distributed Quantum Computing

delete2025-01-01
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PRE
AI
Y
Yu Liu
Y
Yingling Mao
徐旭 cover
徐旭 (Xu Xu)
X
Xiaojun Shang
F
Fan Ye
杨园园 cover
杨园园 (Yuanyuan Yang)
DOI:10.1109/TON.2025.3544319delete
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Abstract

Abstract

En 中文
Quantum computing, utilizing the unique properties of quantum mechanics, has the potential to revolutionize various fields. However, current quantum processors face challenges in scaling the number of qubits, limiting their practical applications. In response, Distributed Quantum Computing (DQC) has emerged as a promising paradigm where multiple interconnected Quantum Processing Units (QPUs) collaborate to execute quantum circuits. In this paper, we focus on designing networks to interconnect QPUs for the implementation of DQC. We find that in real-world experiments and systems, the photon collection and coupling efficiency is low, leading to significant performance degradation in direct connection networks. To address this limitation, we propose a novel multistage switching network tailored for DQC, which has low system complexity and high entanglement generation rates. The proposed switching network comprises $\log _{2}(N)$ stages and $N/2$ binary switches at each stage, where N represents the number of QPUs. We prove that the proposed network is nonblocking and develop an efficient routing algorithm with a time complexity of $\mathcal {O}(N\log (N))$ . Additionally, we show the success probability of entanglement generation in the proposed switching network. Extensive simulations demonstrate that our network significantly outperforms the highly efficient circuit-switching Beneš network and three direct connection networks.
Keywords:
Quantum computing
quantum networks
and interconnection networks

Journal

I
IEEE Transactions on Networking
IF:
0
Papers:
543
Citations:
0

Organization

S
stony brook university
Scholars:
1.4W
Papers: 1.0W
Citations: 20
T
the university of texas at arlington
Scholars:
239
Papers: 120
Citations: 0
T
The Hong Kong Polytechnic University
Scholars:
5.1K
Papers: 3.0K
Citations: 17
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Cited Papers

Cited Papers

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err2021-07-22
err0
errOAAI
errStefan Krastanov; Hamza Raniwala; Jeffrey Holzgrafe; Kurt Jacobs; Marko Lončar; Matthew J. Reagor; Dirk R. Englund
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Quantum networks with neutral atom processing nodes
err2023-09-16
err25
errOAAI
errCovey, Jacob P.; Weinfurter, Harald; Bernien, Hannes
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