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Automatic procedure for aberration compensation in digital holographic microscopy and applications to specimen shape compensation

机译:数字全息显微镜中像差补偿的自动程序及其在样品形状补偿中的应用

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摘要

We present a procedure that compensates for phase aberrations in digital holographic microscopy by computing a polynomial phase mask directly from the hologram. The phase-mask parameters are computed automatically without knowledge of physical values such as wave vectors, focal lengths, or distances. This method enables one to reconstruct correct and accurate phase distributions, even in the presence of strong and high-order aberrations. Examples of applications are shown for microlens imaging and for compensating for the deformations associated with a tilted thick plate. Finally we show that this method allows compensation for the curvature of the specimen, revealing its surface defects and roughness. Examples of applications are shown for microlenses and metallic sphere imaging.
机译:我们提出了一种通过直接从全息图计算多项式相位掩模来补偿数字全息显微镜中的相差的程序。相位掩码参数是自动计算的,无需了解物理值,例如波矢,焦距或距离。即使存在强像差和高阶像差,该方法也可以重建正确且准确的相位分布。示出了用于微透镜成像和补偿与倾斜的厚板相关的变形的应用示例。最后,我们证明了该方法可以补偿试样的曲率,从而揭示其表面缺陷和粗糙度。显示了微透镜和金属球成像的应用示例。

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