Correlations in Noisy Measurements

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, MATHEMATICAL Open Systems & Information Dynamics Pub Date : 2022-06-01 DOI:10.1142/s1230161222500093
Seungchan Seo, J. Seong, J. Bae
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Abstract

Although a measurement on the computational basis is devised in quantum computing, e.g., cloud-based quantum computing services, a quantum measurement in a realistic scenario is noisy. In particular, a measurement readout error in the era of noisy-intermediate-scale-quantum technologies is significant. In this work, we consider measurements on multiple qubits in a realistic scenario and present a method of analyzing noise in the measurement. Correlations existing in a noisy measurement are of particular interest so that local and crosstalk errors are introduced: the existence of correlations in a measurement in cloud-based quantum computing services is verified. We then present quantification of local and crosstalk errors and apply it to a noisy measurement in a cloud-based quantum computing service. Our results that analyze measurement errors can be used to mitigate these errors.
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噪声测量中的相关性
尽管在量子计算中设计了基于计算的测量,例如基于云的量子计算服务,但现实场景中的量子测量是有噪声的。特别是,在噪声-中尺度量子技术时代,测量读出误差是显着的。在这项工作中,我们考虑在现实场景中对多个量子位进行测量,并提出了一种分析测量中噪声的方法。存在于噪声测量中的相关性是特别有趣的,因此引入了局部和串扰误差:验证了基于云的量子计算服务中测量中相关性的存在。然后,我们提出了局部和串扰误差的量化,并将其应用于基于云的量子计算服务中的噪声测量。我们分析测量误差的结果可以用来减轻这些误差。
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来源期刊
Open Systems & Information Dynamics
Open Systems & Information Dynamics 工程技术-计算机:信息系统
CiteScore
1.40
自引率
12.50%
发文量
4
审稿时长
>12 weeks
期刊介绍: The aim of the Journal is to promote interdisciplinary research in mathematics, physics, engineering and life sciences centered around the issues of broadly understood information processing, storage and transmission, in both quantum and classical settings. Our special interest lies in the information-theoretic approach to phenomena dealing with dynamics and thermodynamics, control, communication, filtering, memory and cooperative behaviour, etc., in open complex systems.
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