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首页> 外文期刊>Applied optics >Speckle reduction by combination of digital filter and optical suppression in a modified Gerchberg-Saxton algorithm computer-generated hologram
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Speckle reduction by combination of digital filter and optical suppression in a modified Gerchberg-Saxton algorithm computer-generated hologram

机译:在改进的Gerchberg-Saxton算法计算机生成的全息图中,通过将数字滤波器和光学抑制相结合来减少斑点

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摘要

A speckleless illuminated modified-Gerchberg-Saxton-algorithm-type computer-generated hologram, which adopts a lower frequency of the iterative algorithm and calculation time, is proposed to code a hologram with two signals and position a multiplexing phase-only function, which can reconstruct the left and the right viewing holograms on the pupillary-distance position after the decryption and still maintain the content with high contrast and definition. The reconstructed image quality presents root mean square error of 0.03, with a diffraction efficiency of 87%, and signal-to-noise ratio of 8 dB after the analysis. Furthermore, two denoising techniques for the digital filter and optical suppression are combined, in which the speckle suppression with pseudorandom phase modulation and a rotating diffuser are utilized for successfully reducing the speckle contrast, which was reduced to below 4%. The goal was to reduce visual fatigue for the viewers.
机译:提出了一种采用较低频率的迭代算法和计算时间的无斑点照明改进型Gerchberg-Saxton算法计算机生成的全息图,该方法可以对具有两个信号的全息图进行编码,并定位仅具有复用相位的函数,从而可以在解密后在瞳孔距离位置上重建左右观看全息图,并且仍然保持内容具有高对比度和清晰度。分析后,重建的图像质量的均方根误差为0.03,衍射效率为87%,信噪比为8 dB。此外,将数字滤波器和光学抑制的两种去噪技术组合在一起,其中利用具有伪随机相位调制的斑点抑制和旋转扩散器成功降低斑点对比度,降低到4%以下。目的是减少观看者的视觉疲劳。

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