DC-MBQC: A Distributed Compilation Framework for Measurement-Based Quantum Computing
Yecheng Xue, Rui Yang, Zhiding Liang, Tongyang Li
摘要
Distributed quantum computing (DQC) is a promising technique for scaling up quantum systems. While significant progress has been made in DQC for quantum circuit models, there exists much less research on DQC for measurement-based quantum computing (MBQC), which is a universal quantum computing model that is essentially different from the circuit model and particularly well-suited to photonic quantum platforms. In this paper, we propose DC-MBQC, the first distributed quantum compilation framework tailored for MBQC. We identify and address two key challenges in enabling DQC for MBQC. First, for task allocation among quantum processing units (QPUs), we develop an adaptive graph partitioning algorithm that preserves the structure of the graph state while balancing the workload across QPUs. Second, for inter-QPU communication, we introduce the layer scheduling problem and propose an algorithm to solve it. Regrading realistic hardware requirements, we optimize the execution time of running quantum programs and the corresponding required photon lifetime to avoid fatal failures caused by photon loss. Our experiments demonstrate aimprovement on required photon lifetime andspeedup with 8 fully-connected QPUs, which further confirm the advantage of distributed quantum computing in photonic systems.
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它引用的顶会 Paper4
- CutQC: using small Quantum computers for large Quantum circuit evaluationsWei Tang, Teague Tomesh, Martin Suchara, Jeffrey Larson 等ASPLOS 2021 · 被引用 159 次
- OneQ: A Compilation Framework for Photonic One-Way Quantum ComputationHezi Zhang, Anbang Wu, Yuke Wang, Gushu Li 等ISCA 2023 · 被引用 20 次
- OnePerc: A Randomness-aware Compiler for Photonic Quantum ComputingHezi Zhang, Jixuan Ruan, Hassan Shapourian, Ramana Rao Kompella 等ASPLOS 2024 · 被引用 8 次
- FCM: A Fusion-aware Wire Cutting Approach for Measurement-based Quantum ComputingZewei Mo, Yingheng Li, Aditya Pawar, Xulong Tang 等DAC 2024 · 被引用 7 次
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