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Experimental characterization of qutrits using symmetric, informationally complete positive operator-valued measures

机译:使用对称的信息完全正算子值量度对qutrit进行实验表征

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Generalized quantum measurements (also known as positive operator-valued measures or POVMs) are of great importance in quantum information and quantum foundations, but often difficult to perform. We present an experimental approach which can in principle be used to perform arbitrary POVMs in a linear-optical context. One of the most interesting POVMs, the symmetric, informationally complete-POVM (or SIC-POVM), is the most compact set of measurements that can be used to fully describe a quantum state. We use our technique to carry out the first experimental characterization of the state of a qutrit using SIC-POVMs. Because of the highly symmetric nature of this measurement, such a representation has the unique property that it permits all other measurement outcomes to be predicted by a simple extension of the classical Bayesian sum rule, making no use of complex amplitudes or Hilbert-space operators. We demonstrate this approach on several qutrit states encoded in single photons.
机译:广义量子测量(也称为正算子值测量或POVM)在量子信息和量子基础中非常重要,但通常难以执行。我们提出了一种实验方法,该方法原则上可以用于在线性光学环境中执行任意POVM。最有趣的POVM之一是对称的信息完全POVM(或SIC-POVM),是最紧凑的一组测量值,可用于完全描述量子态。我们使用我们的技术对使用SIC-POVM的Qutrit的状态进行了首次实验表征。由于此测量具有高度对称性,因此这种表示具有独特的属性,它允许通过经典贝叶斯和规则的简单扩展来预测所有其他测量结果,而无需使用复振幅或希尔伯特空间算子。我们在单个光子中编码的几个qutrit状态上证明了这种方法。

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