经典相显微镜精度的基本界限

D. Bouchet, Jonathan Dong, Dante Maestre, T. Juffmann
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引用次数: 5

摘要

已经设计了各种各样的成像系统来测量相位变化,应用范围从物理学到生物学和医学。在这项工作中,我们从理论上比较了在弹噪声极限下操作的经典相位显微镜技术所能达到的相位估计精度。我们展示了如何计算任何线性光学系统的Cram 'er ' - rao界,包括相对比显微镜、相移全息、空间光干涉显微镜和相位成像的波前局部优化。结果表明,波前整形是设计具有最佳相位精度的相位显微镜的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fundamental Bounds on the Precision of Classical Phase Microscopes
A wide variety of imaging systems have been designed to measure phase variations, with applications from physics to biology and medicine. In this work, we theoretically compare the precision of phase estimations achievable with classical phase microscopy techniques, operated at the shot-noise limit. We show how the Cram\'er-Rao bound is calculated for any linear optical system, including phase-contrast microscopy, phase-shifting holography, spatial light interference microscopy, and local optimization of wavefronts for phase imaging. Our results show that wavefront shaping is required to design phase microscopes with optimal phase precision.
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