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Recovering correct phase information in multiwavelength digital holographic microscopy by compensation for chromatic aberrations

机译:通过补偿色差,在多波长数字全息显微镜中恢复正确的相位信息

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摘要

We demonstrate experimentally that correct phase imaging without 2pi ambiguity is obtainable in digital holography by using a multiwavelength approach in the microscope configuration. We describe a general approach for removing chromatic aberrations and for controlling the pixel size of the reconstructed phase image in multiwavelength digital holography when the Fourier transform method is adopted for the numerical reconstruction of digital holograms. The retrieved phase is affected by the unavoidable, unwanted chromatic aberration. The correct phase can be obtained by evaluating the phase from the reference holograms reconstructed at different wavelengths to compensate for the chromatic aberration.
机译:我们通过实验证明,通过在显微镜配置中使用多波长方法,可以在数字全息术中获得无2pi歧义的正确相位成像。当采用傅里叶变换方法进行数字全息图的数值重建时,我们描述了一种在多波长数字全息图中消除色差和控制重建相位图像的像素大小的通用方法。所取回的相位受不可避免的,不希望有的色差影响。可以通过评估在不同波长下重建的参考全息图的相位来补偿色差,从而获得正确的相位。

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