Pezzè Luca, Ciampini Mario A, Spagnolo Nicolò, Humphreys Peter C, Datta Animesh, Walmsley Ian A, Barbieri Marco, Sciarrino Fabio, Smerzi Augusto
QSTAR, INO-CNR and LENS, Largo Enrico Fermi 2, I-50125 Firenze, Italy.
Dipartimento di Fisica, Sapienza Università di Roma, Piazzale Aldo Moro 5, I-00185 Roma, Italy.
Phys Rev Lett. 2017 Sep 29;119(13):130504. doi: 10.1103/PhysRevLett.119.130504.
A quantum theory of multiphase estimation is crucial for quantum-enhanced sensing and imaging and may link quantum metrology to more complex quantum computation and communication protocols. In this Letter, we tackle one of the key difficulties of multiphase estimation: obtaining a measurement which saturates the fundamental sensitivity bounds. We derive necessary and sufficient conditions for projective measurements acting on pure states to saturate the ultimate theoretical bound on precision given by the quantum Fisher information matrix. We apply our theory to the specific example of interferometric phase estimation using photon number measurements, a convenient choice in the laboratory. Our results thus introduce concepts and methods relevant to the future theoretical and experimental development of multiparameter estimation.
多相位估计的量子理论对于量子增强传感与成像至关重要,并且可能将量子计量学与更复杂的量子计算和通信协议联系起来。在本信函中,我们解决多相位估计的关键难题之一:获得一种能达到基本灵敏度界限的测量方法。我们推导了作用于纯态的投影测量达到由量子费希尔信息矩阵给出的精度极限理论界限的充要条件。我们将我们的理论应用于使用光子数测量的干涉相位估计的具体示例,这是实验室中的一个便捷选择。因此,我们的结果引入了与多参数估计未来理论和实验发展相关的概念和方法。