OnePerc: A Randomness-aware Compiler for Photonic Quantum Computing
Hezi Zhang, Jixuan Ruan, Hassan Shapourian, Ramana Rao Kompella, Yufei Ding
Abstract
The photonic platform holds great promise for quantum computing. Nevertheless, the intrinsic probabilistic characteristic of its native fusion operations introduces substantial randomness into the computing process, posing significant challenges to achieving scalability and efficiency in program execution. In this paper, we introduce a randomness-aware compilation framework designed to concurrently achieve scalability and efficiency. Our approach leverages an innovative combination of offline and online optimization passes, with a novel intermediate representation serving as a crucial bridge between them. Through a comprehensive evaluation, we demonstrate that this framework significantly outperforms the most efficient baseline compiler in a scalable manner, opening up new possibilities for realizing scalable photonic quantum computing.
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Install the CLIlune papers fulltext cd1a2993-afb8-44d1-82c7-8588b667c221Cited by top-tier papers5
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- PowerMove: Optimizing Compilation for Neutral Atom Quantum Computers with Zoned ArchitectureJixuan Ruan, Xiang Fang, Hezi Zhang, Ang Li et al.ASPLOS 2025 · 1 citation
- DC-MBQC: A Distributed Compilation Framework for Measurement-Based Quantum ComputingYecheng Xue, Rui Yang, Zhiding Liang, Tongyang LiHPCA 2026
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