Hardware-optimal quantum algorithms

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2025-03-19 DOI:10.1073/pnas.2419273122
Stefanie Muroya, Krishnendu Chatterjee, Thomas A. Henzinger
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Abstract

Quantum hardware is inherently fragile and noisy. We find that the accuracy of traditional quantum error correction algorithms can be improved depending on the hardware. Given different hardware specifications, we automatically synthesize hardware-optimal algorithms for parity correction, qubit resetting, and GHZ (Greenberger–Horne–Zeilinger) state preparation. Using stochastic techniques from computer science, our method presents a computational tool to compute exact accuracy guarantees and synthesize optimal algorithms that are often different from traditional ones. We also show that improvements can be gained with respect to the Qiskit transpiler as we compute the hardware-optimal qubit mapping for the GHZ state-preparation problem.
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硬件优化量子算法
量子硬件本质上是脆弱和嘈杂的。我们发现传统量子纠错算法的精度可以根据硬件的不同而有所提高。给定不同的硬件规格,我们自动合成奇偶校验、量子位重置和GHZ (greenberger - horn - zeilinger)状态准备的硬件最优算法。利用计算机科学中的随机技术,我们的方法提供了一种计算工具来计算精确的精度保证,并综合出与传统算法不同的最优算法。我们还表明,在为GHZ状态准备问题计算硬件最优量子比特映射时,可以获得关于Qiskit转译器的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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