Universal framework for simultaneous tomography of quantum states and SPAM noise

IF 5.1 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Quantum Pub Date : 2024-07-30 DOI:10.22331/q-2024-07-30-1426
Abhijith Jayakumar, Stefano Chessa, Carleton Coffrin, Andrey Y. Lokhov, Marc Vuffray, Sidhant Misra
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Abstract

We present a general denoising algorithm for performing $\textit{simultaneous tomography}$ of quantum states and measurement noise. This algorithm allows us to fully characterize state preparation and measurement (SPAM) errors present in any quantum system. Our method is based on the analysis of the properties of the linear operator space induced by unitary operations. Given any quantum system with a noisy measurement apparatus, our method can output the quantum state and the noise matrix of the detector up to a single gauge degree of freedom. We show that this gauge freedom is unavoidable in the general case, but this degeneracy can be generally broken using prior knowledge on the state or noise properties, thus fixing the gauge for several types of state-noise combinations with no assumptions about noise strength. Such combinations include pure quantum states with arbitrarily correlated errors, and arbitrary states with block independent errors. This framework can further use available prior information about the setting to systematically reduce the number of observations and measurements required for state and noise detection. Our method effectively generalizes existing approaches to the problem, and includes as special cases common settings considered in the literature requiring an uncorrelated or invertible noise matrix, or specific probe states.
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量子态和 SPAM 噪声同步层析通用框架
我们提出了一种对量子态和测量噪声进行 $\textit{simultaneous tomography}$ 的通用去噪算法。通过这种算法,我们可以全面描述任何量子系统中存在的状态准备和测量(SPAM)误差。我们的方法基于对单元运算诱导的线性算子空间特性的分析。给定任何带有噪声测量仪器的量子系统,我们的方法都能输出探测器的量子态和噪声矩阵,最多只有一个量规自由度。我们的研究表明,在一般情况下,这种量规自由度是不可避免的,但这种退行性一般可以利用关于状态或噪声特性的先验知识来打破,从而在不假设噪声强度的情况下固定几种状态-噪声组合的量规。这些组合包括具有任意相关误差的纯量子态,以及具有块独立误差的任意态。这一框架可以进一步利用有关设置的现有先验信息,系统地减少状态和噪声检测所需的观测和测量次数。我们的方法有效地概括了解决这一问题的现有方法,并将文献中考虑的需要不相关或可反转噪声矩阵或特定探测状态的常见设置作为特例。
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来源期刊
Quantum
Quantum Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
9.20
自引率
10.90%
发文量
241
审稿时长
16 weeks
期刊介绍: Quantum is an open-access peer-reviewed journal for quantum science and related fields. Quantum is non-profit and community-run: an effort by researchers and for researchers to make science more open and publishing more transparent and efficient.
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