特征向量
费希尔信息
单一制国家
量子
可见的
量子态
灵敏度(控制系统)
量子信息
量子过程
计算机科学
统计物理学
量子力学
物理
量子动力学
电子工程
机器学习
工程类
政治学
法学
作者
J. Reilly,John Drew Wilson,Simon B. Jäger,Christopher Wilson,Murray Holland
标识
DOI:10.1103/physrevlett.131.150802
摘要
We propose a computationally efficient method to derive the unitary evolution that a quantum state is most sensitive to. This allows one to determine the optimal use of an entangled state for quantum sensing, even in complex systems where intuition from canonical squeezing examples breaks down. In this paper we show that the maximal obtainable sensitivity using a given quantum state is determined by the largest eigenvalue of the quantum Fisher information matrix (QFIM) and the corresponding evolution is uniquely determined by the coinciding eigenvector. Since we optimize the process of parameter encoding rather than focusing on state preparation protocols, our scheme is relevant for any quantum sensor. This procedure naturally optimizes multiparameter estimation by determining, through the eigenvectors of the QFIM, the maximal set of commuting observables with optimal sensitivity.
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