OneQ: A Compilation Framework for Photonic One-Way Quantum Computation

OneQ: A Compilation Framework for Photonic One-Way Quantum Computation
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DOI:
10.1145/3579371.3589047
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发表时间:
2022-09
期刊:
Proceedings of the 50th Annual International Symposium on Computer Architecture
影响因子:
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通讯作者:
Hezi Zhang;Anbang Wu;Yuke Wang;Gushu Li;Hassan Shapourian;A. Shabani;Yufei Ding
Hezi Zhang;Anbang Wu;Yuke Wang;Gushu Li;Hassan Shapourian;A. Shabani;Yufei Ding
中科院分区:
其他
文献类型:
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作者:
Hezi Zhang;Anbang Wu;Yuke Wang;Gushu Li;Hassan Shapourian;A. Shabani;Yufei Ding

文献摘要

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在本文中,我们提出了OneQ,这是第一个面向现实光子量子体系结构的单向量子计算优化编译框架。与以前的固态量子比特技术编译工作不同,我们的创新框架解决了光子量子计算中的一系列独特挑战。具体地说,这包括随着时间的推移动态生成量子比特,需要通过测量而不是依赖于1量子比特和2量子比特的门来执行所有计算,以及光子在测量后瞬间被销毁的事实。作为该领域的先驱,我们展示了光子单向量子计算的巨大优化潜力,展示了OneQ将计算资源需求降低数量级的非凡能力。
In this paper, we propose OneQ, the first optimizing compilation framework for one-way quantum computation towards realistic photonic quantum architectures. Unlike previous compilation efforts for solid-state qubit technologies, our innovative framework addresses a unique set of challenges in photonic quantum computing. Specifically, this includes the dynamic generation of qubits over time, the need to perform all computation through measurements instead of relying on 1-qubit and 2-qubit gates, and the fact that photons are instantaneously destroyed after measurements. As pioneers in this field, we demonstrate the vast optimization potential of photonic one-way quantum computing, showcasing the remarkable ability of OneQ to reduce computing resource requirements by orders of magnitude.