论文标题
测量与量子开关的不相容性和聚类量子可观察力
Measuring incompatibility and clustering quantum observables with a quantum switch
论文作者
论文摘要
不兼容的可观察物的存在是量子力学的基石,也是量子技术中宝贵的资源。在这里,我们介绍了一种不兼容的度量,称为相互特征空间干扰(MED),该措施量化了通过在另一个人的特征区上观察到的尖锐观察到的敏锐的干扰量。 MED在von Neumann测量空间上提供了一个度量,可以通过使用称为量子开关的设置来有效地估计测量过程来有效地估计,这也允许人们量化非任意量子过程的非交换性。借助这些功能,可以将MED用于量子机学习任务。我们通过提供一种无监督的算法来证明这种应用,该算法将未知的von Neumann测量结果簇。我们的算法对噪声非常强大,可用于识别具有大致相同测量环境的观察者组。
The existence of incompatible observables is a cornerstone of quantum mechanics and a valuable resource in quantum technologies. Here we introduce a measure of incompatibility, called the mutual eigenspace disturbance (MED), which quantifies the amount of disturbance induced by the measurement of a sharp observable on the eigenspaces of another. The MED provides a metric on the space of von Neumann measurements, and can be efficiently estimated by letting the measurement processes act in an indefinite order, using a setup known as the quantum switch, which also allows one to quantify the noncommutativity of arbitrary quantum processes. Thanks to these features, the MED can be used in quantum machine learning tasks. We demonstrate this application by providing an unsupervised algorithm that clusters unknown von Neumann measurements. Our algorithm is robust to noise can be used to identify groups of observers that share approximately the same measurement context.