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Compensation of chromatic aberration in multiwavelcngth digital holographic investigation of microstructures

机译:显微结构多波数字全息研究中色差的补偿

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摘要

We demonstrate that refractive index profile of microstructure could be correctly recovered in multiwavelenght digital holographic microscope when chromatic aberration is taken into account. The chromatic aberration introduced by the optical imaging components can be can be numerically compensated in the reconstruction process. The compensation approach requires the control of the reconstructed pixel size in the image plane if a Fresnel Transformation Method is adopted to take into account the different wavelengths used to investigate the samples. Description of the method and several examples of application will be discussed.
机译:我们证明,当考虑色差时,可以在多波长数字全息显微镜中正确恢复微观结构的折射率分布。由光学成像组件引入的色差可以在重建过程中得到数值补偿。如果采用菲涅耳变换方法来考虑用于研究样本的不同波长,则补偿方法需要控制图像平面中重建的像素大小。将讨论该方法的描述和几个应用示例。

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