Istituto Nazionale di Ricerca Metrologica, Strada delle Cacce 91, Torino 10135, Italy.
Phys Rev Lett. 2012 Jun 22;108(25):253601. doi: 10.1103/PhysRevLett.108.253601. Epub 2012 Jun 19.
A quantum measurement can be described by a set of matrices, one for each possible outcome, which represents the positive operator-valued measure (POVM) of the sensor. Efficient protocols of POVM extraction for arbitrary sensors are required. We present the first experimental POVM reconstruction that takes explicit advantage of a quantum resource, i.e., nonclassical correlations with an ancillary state. A POVM of a photon-number-resolving detector is reconstructed by using strong quantum correlations of twin beams generated by parametric down-conversion. Our reconstruction method is more statistically robust than POVM reconstruction methods that use classical input states.
量子测量可以用一组矩阵来描述,每个矩阵对应一个可能的结果,这代表了传感器的正算子值测量(POVM)。需要有效的任意传感器 POVM 提取协议。我们提出了第一个明确利用量子资源(即与辅助态的非经典相关性)的实验 POVM 重建。通过使用参数下转换产生的孪生光束的强量子相关性,重建了光子数分辨探测器的 POVM。与使用经典输入态的 POVM 重建方法相比,我们的重建方法在统计上更稳健。