Efficient identification of unitary quantum processes

Yuanlong Wang, Qi Yin, D. Dong, B. Qi, I. Petersen, Z. Hou, H. Yonezawa, G. Xiang
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引用次数: 2

Abstract

Identifying an unknown unitary quantum process is a fundamental task in the development of quantum technology. In this paper, we propose an efficient identification algorithm for estimating unitary processes. In the method, input pure states are used and a fast quantum state tomography algorithm is developed to reconstruct the output states. Then the information of the output states is used to estimate the unitary process. The identification algorithm has computational complexity O(d3) for a d-dimensional system. Numerical results show that the proposed identification algorithm is much more efficient than the maximum likelihood estimation method and works well for input mixed states with high purity. An analytical upper bound for the identification error is also provided, and numerical simulations and experimental results on quantum optical systems verify the theoretical results.
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单一量子过程的有效识别
识别未知的单一量子过程是量子技术发展的一项基本任务。本文提出了一种用于估计酉过程的有效辨识算法。该方法采用输入纯态,并开发了一种快速量子态层析算法来重建输出态。然后利用输出状态的信息对整个过程进行估计。对于d维系统,该识别算法的计算复杂度为O(d3)。数值结果表明,所提出的识别算法比极大似然估计方法更有效,对高纯度的输入混合状态也能很好地识别。给出了识别误差的解析上界,量子光学系统的数值模拟和实验结果验证了理论结果。
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