Can quantum computers do nothing?

IF 6.6 1区 物理与天体物理 Q1 PHYSICS, APPLIED npj Quantum Information Pub Date : 2024-11-26 DOI:10.1038/s41534-024-00918-6
Alexander Nico-Katz, Nathan Keenan, John Goold
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Abstract

Quantum computing platforms are subject to contradictory engineering requirements: qubits must be protected from mutual interactions when idling (‘doing nothing’), and strongly interacting when in operation. If idling qubits are not sufficiently protected, information ‘leaks’ into neighbouring qubits, becoming ultimately inaccessible. Candidate solutions to this dilemma include many-body localization, dynamical decoupling, and active error correction. However, no protocol exists to quantify this effect in a similar way to e.g. SPAM errors. We develop a scalable, device non-specific, protocol for quantifying idle information loss by exploiting tools from quantum information theory. We implement this protocol in over 3500 experiments carried out across 4 months (Dec 2023–Mar 2024) on IBM’s entire Falcon 5.11 processor series. After accounting for other error sources, we detect information loss to high degrees of statistical significance. This work thus provides a firm quantitative foundation from which the protection-operation dilemma can be investigated and ultimately resolved.

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量子计算机可以什么都不做吗?
量子计算平台面临着相互矛盾的工程要求:空闲("什么也不做")时必须保护量子比特不发生相互影响,而运行时又必须保护量子比特不发生强相互作用。如果空闲的量子比特没有得到充分保护,信息就会 "泄漏 "到邻近的量子比特中,最终变得无法访问。解决这一难题的候选方案包括多体定位、动态解耦和主动纠错。然而,目前还没有一种协议能以类似于 SPAM 错误的方式量化这种影响。我们利用量子信息理论工具,开发了一种可扩展、不针对特定设备的协议,用于量化空闲信息丢失。我们在 IBM 的整个猎鹰 5.11 处理器系列上进行了 3500 多次实验,历时 4 个月(2023 年 12 月至 2024 年 3 月)。在考虑了其他误差源之后,我们检测到的信息丢失在统计意义上达到了很高的程度。因此,这项工作提供了一个坚实的定量基础,我们可以在此基础上研究并最终解决保护与操作之间的难题。
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来源期刊
npj Quantum Information
npj Quantum Information Computer Science-Computer Science (miscellaneous)
CiteScore
13.70
自引率
3.90%
发文量
130
审稿时长
29 weeks
期刊介绍: The scope of npj Quantum Information spans across all relevant disciplines, fields, approaches and levels and so considers outstanding work ranging from fundamental research to applications and technologies.
期刊最新文献
Networking quantum networks with minimum cost aggregation High-dimensional entanglement witnessed by correlations in arbitrary bases Realizing ultrahigh capacity quantum superdense coding on quantum photonic chip Quantum-enhanced dark matter detection with in-cavity control: mitigating the Rayleigh curse Halving the cost of quantum algorithms with randomization
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