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Spatially incoherent Fourier digital holography by four-step phase-shifting rotational shearing interferometer and its image quality

机译:四步相位转换旋转剪切干涉仪及其图像质量的空间不连贯的傅立叶数字全息术

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Spatially incoherent Fourier digital holography using a rotational shearing interferometer for four-step phase-shifting method is proposed. The previous incoherent Fourier holography using a rotational shearing interferometer [Watanabe and Nomura (Appl. Opt. 54: A18, 2015)] employs the two-step phase-shifting method in the vertical and horizontal polarizations. The reconstructed image contains a large bias term. This paper proposes introduction of two kinds of wave plates in one path of a rotational shearing interferometer for a four-step phase-shifting method. A Fourier hologram is obtained from the four recorded holograms for eliminating the bias term and the twin image. The numerical simulation and the optical experiment demonstrate improvement of the image quality of reconstructed image by the twin image and bias level reduction. Furthermore, the effect of the size of an image sensor on the image quality in rotational shearing interferometer is also investigated by the numerical simulations.
机译:提出了一种用于四步相移方法的旋转剪切干涉仪的空间不连贯的傅里叶数字全息仪。使用旋转剪切干涉仪的先前不连贯的傅里叶全息术[Watanabe和Nomura(Appl。选择。54:A18,2015)]采用垂直和水平偏振中的两步相位移位方法。重建的图像包含一个大的偏置术语。本文提出了一种在旋转剪切干涉仪的一条路径中引入两种波片,以进行四步相移法。从四个记录的全息图获得傅里叶全息图,用于消除偏置项和双图像。数值模拟和光学实验表明,通过双重图像和偏置水平降低来提高重建图像的图像质量。此外,通过数值模拟还研究了图像传感器尺寸对旋转剪切干涉仪中的图像质量的影响。

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