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Reconstruction of off-axis lensless Fourier transform digital holograms based on angular spectrum theory

机译:基于角谱理论的轴轴无透镜傅里叶变换数字全息图的重建

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A simple holographic high-resolution imaging system without pre-magnification , which is based on off-axis lensless Fourier transform configuration, has been developed. Experimental investigations are performed on USAF resolution test target. The method based on angular spectrum theory for reconstructing lensless Fourier hologram is given. The reconstructed results of the same hologram at different reconstructing distances are presented for what is to our knowledge the first time. Approximate diffraction limited lateral resolution is achieved. The results show that the angular spectrum method has several advantages over more commonly used Fresnel transform method. Lossless reconstruction can be achieved for any numerical aperture holograms as long as the wave field is calculated at a special reconstructing distance, which is determined by the light wavelength and the chip size and the pixel size of the CCD sensor. This is very important for reconstructing an extremely large numerical aperture hologram. Frequency-domain spectrum filtering can be applied conveniently to remove the disturbance of zero-order. The reconstructed image wave field is accurate so long as the sampling theorem is not violated. The experimental results also demonstrate that for a high quality hologram, special image processing is unnecessary to obtain a high quality image.
机译:已经开发出一种简单的全息高分辨率成像系统,其没有预倍率,基于轴上无透镜傅立叶变换配置。对USAF分辨率测试目标进行实验研究。给出了基于角谱理论的重建无透镜傅里叶全息图的方法。在不同重建距离下的相同全息图的重建结果呈现了第一次知识的知识。实现近似衍射有限的横向分辨率。结果表明,角谱法对更常用的菲涅耳变换方法具有几个优点。只要在特殊重建距离计算波场的任何数值孔径全息图,可以实现任何数值孔径全息图的无损重建,这由由光波长和CCD传感器的芯片尺寸和像素尺寸决定的波场。这对于重建极大的数值孔径全息图非常重要。频率域谱滤波可以方便地应用以消除零级的干扰。只要没有违反采样定理,重建的图像波场就准确了。实验结果还证明,对于高质量全息图,不需要特殊的图像处理来获得高质量的图像。

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