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Quantum-limited Localisation and Resolution in Three Dimensions

2020/12/31 by Ben Wang, Liang Xu, Lijian Zhang · 1 citation
Physics and Astronomy · #quant-ph #physics.optics

paper · pdf · doi:10.1364/prj.417613

published as Photon. Res. 9(8), 1522-1530 (2021) · 10 pages, 3 figures

arxiv created 2021/07/28 · arxiv updated 2021/07/29

Abstract

As a method to extract information from optical system, imaging can be viewed as a parameter estimation problem. The fundamental precision in locating one emitter or estimating the separation between two incoherent emitters is bounded below by the multiparameter quantum Cramer-Rao bound (QCRB).Multiparameter QCRB gives an intrinsic bound in parameter estimation. We determine the ultimate potential of quantum-limited imaging for improving the resolution of a far-field, diffraction-limited within the paraxial approximation. We show that the quantum Fisher information matrix (QFIm) about one emitter's position is independent on the true value of it. We calculate the QFIm of two unequal-brightness emitters' relative positions and intensities, the results show that only when the relative intensity and centroids of two point sources including longitudinal and transverse direction are known exactly, the separation in different directions can be estimated simultaneously with finite precision. Our results give the upper bounds on certain far-field imaging technology and will find wide applications from microscopy to astrometry.

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