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Enhancing multi-step quantum state tomography by PhaseLift

机译:通过phaselift增强多步量子区断层扫描

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Multi-photon system has been studied by many groups, however the biggest challenge faced is the number of copies of an unknown state are limited and far from detecting quantum entanglement. The difficulty to prepare copies of the state is even more serious for the quantum state tomography. One possible way to solve this problem is to use adaptive quantum state tomography, which means to get a preliminary density matrix in the first step and revise it in the second step. In order to improve the performance of adaptive quantum state tomography, we develop a new distribution scheme of samples and extend it to three steps, that is to correct it once again based on the density matrix obtained in the traditional adaptive quantum state tomography. Our numerical results show that the mean square error of the reconstructed density matrix by our new method is improved to the level from 10(-4) to 10(-9) for several tested states. In addition, PhaseLift is also applied to reduce the required storage space of measurement operator. (C) 2017 Elsevier Inc. All rights reserved.
机译:已经通过多个组研究了多光子系统,但是面临的最大挑战是未知状态的副本数量有限,远远不受检测量子缠结。难以准备国家的副本对于量子断层扫描更严重。解决这个问题的一种可能方法是使用自适应量子状态断层扫描,这意味着在第一步中获得初步密度矩阵并在第二步中修改它。为了提高自适应量子断层扫描的性能,我们开发了一个新的样品分布方案,并将其扩展为三个步骤,即基于传统自适应量子区型中获得的密度矩阵再次校正它。我们的数值结果表明,通过我们的新方法的重建密度矩阵的平均方误差得到了几个测试状态的10(-4)到10(-9)的水平。此外,还应用了相框以减少测量操作员所需的存储空间。 (c)2017年Elsevier Inc.保留所有权利。

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