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Quantization noise and its reduction in lensless Fourier digital holography

机译:无透镜傅立叶数字全息术中的量化噪声及其降低

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摘要

Digital holography is an imaging technique that enables recovery of topographic 3D information about an object under investigation. In digital holography, an interference pattern is recorded on a digital camera. Therefore, quantization of the recorded hologram is an integral part of the imaging process. We study the influence of quantization error in the recorded holograms on the fidelity of both the intensity and phase of the reconstructed image. We limit our analysis to the case of lensless Fourier off-axis digital holograms. We derive a theoretical model to predict the effect of quantization noise and we validate this model using experimental results. Based on this, we also show how the resultant noise in the reconstructed image, as well as the speckle that is inherent in digital holography, can be conveniently suppressed by standard speckle reduction techniques. We show that high-quality images can be obtained from binary holograms when speckle reduction is performed.
机译:数字全息术是一种成像技术,能够恢复有关被调查对象的地形3D信息。在数字全息术中,干涉图案被记录在数字照相机上。因此,记录的全息图的量化是成像过程的组成部分。我们研究了记录的全息图中量化误差对重建图像强度和相位保真度的影响。我们将分析限于无透镜傅里叶离轴数字全息图的情况。我们导出了一个理论模型来预测量化噪声的影响,并使用实验结果验证了该模型。基于此,我们还显示了如何通过标准的斑点减少技术来方便地抑制重建图像中的合成噪声以及数字全息术中固有的斑点。我们表明,执行散斑减少后,可以从二进制全息图获得高质量的图像。

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