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Shot-noise influence on the reconstructed phase image signal-to-noise ratio in digital holographic microscopy

机译:散粒噪声对数字全息显微镜中重建的相位图像信噪比的影响

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摘要

In digital holographic microscopy, shot noise is an intrinsic part of the recording process with the digital camera. We present a study based on simulations and real measurements describing the shot-noise influence in the quality of the reconstructed phase images. Different configurations of the reference wave and the object wave intensities will be discussed, illustrating the detection limit and the coherent amplification of the object wave. The signal-to-noise ratio (SNR) calculation of the reconstructed phase images based on the decision statistical theory is derived from a model for image quality estimation proposed by Wagner and Brown [Phys. Med. Biol. 30, 489 (1985)]. It will be shown that a phase image with a SNR above 10 can be obtained with a mean intensity lower than 10 photons per pixel and per hologram coming from the observed object. Experimental measurements on a glass-chrome probe will be presented to illustrate the main results of the simulations.
机译:在数字全息显微镜中,散粒噪声是数字照相机记录过程中的固有部分。我们提出了一项基于模拟和真实测量的研究,描述了散粒噪声对重构相位图像质量的影响。将讨论参考波和物波强度的不同配置,说明了物波的检测极限和相干放大。基于判决统计理论的重构相位图像的信噪比(SNR)计算是由Wagner和Brown [Phys。中生物学30,489(1985)]。将会显示,可以获得的SNR大于10的相位图像的平均强度低于来自观察对象的每个像素和每个全息图10个光子。将介绍在玻璃铬探针上的实验测量结果,以说明模拟的主要结果。

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