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The Phase Error Reduction Using Window Functions in Digital Holography

机译:使用数字全息术中的窗口函数的相位误差减少

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Digital holography (DH) is a 3D imaging technique with a theoretical axial accuracy of better than 1-2 nanometers. However, practically, the axial error has been quoted to be tens of nanometers which is much larger than the theoretical value. Previous studies of the axial error mainly focused on the phase error introduced by lens. However, it is found that CCD aperture size is also an important contributors to axial error by our group. It is necessary to investigate the reduction approach of such axial error. The most possible connection between the limited CCD aperture size and the axial error is the diffraction effect. Window functions once have been applied to digital holograms for diffraction suppression and improve the lateral resolution of the intensity image. However, their impacts on phase image and the associated axial dimension measurement are still unknown. In this paper, window functions are applied to digital holograms for phase/axial error reduction. Both simulation and experiment are performed. Moreover, the relation between axial error and window functions is also illustrated by the mathematical formulas derived in the theory. And all the results validate that the window functions can reduce the axial error of digital holography.
机译:数字全息术(DH)是一种3D成像技术,具有优于1-2纳米的理论轴向精度。然而,实际上,引用轴向误差为几十纳米,这远远大于理论值。以前的轴向误差的研究主要集中在镜片引入的相位误差上。然而,发现CCD光圈大小也是我们组轴向误差的重要贡献者。有必要研究这种轴向误差的还原方法。有限的CCD光圈尺寸和轴向误差之间的最可能连接是衍射效果。窗口功能一旦应用于用于衍射抑制的数字全息图,并提高强度图像的横向分辨率。然而,它们对相位图像和相关的轴向尺寸测量的影响仍然是未知的。在本文中,窗口功能应用于数字全息图,用于减少相位/轴误差。进行仿真和实验。此外,轴向误差和窗口函数之间的关系也由该理论中得出的数学公式说明。并且所有结果都验证了窗口功能可以减少数字全息术的轴向误差。

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