光学
斑点图案
全息术
噪音(视频)
过程(计算)
散斑成像
空间频率
散斑噪声
角谱法
迭代法
计算机视觉
滤波器(信号处理)
空间滤波器
全息显示器
迭代和增量开发
计算机科学
图像处理
迭代重建
光学滤波器
全息干涉法
算法
线性滤波器
图像质量
人工智能
最优化问题
计算全息
共轭梯度法
衍射效率
图像复原
图像(数学)
电子散斑干涉技术
杂散光
数字全息术
光传递函数
作者
Chao Li,Jiahao Wei,Chenxiao Wei,Heliang Wu,Xiaohui Ye,Xin Huang,Yongtian Wang,Juan Liu
出处
期刊:Applied Optics
[Optica Publishing Group]
日期:2025-09-23
卷期号:64 (30): 8911-8911
被引量:1
摘要
Speckle noise constrains the performance of holographic three-dimensional (3D) display, highlighting the need for hologram optimization. In this paper, we propose a specialized iterative optimization method for speckle-reduced amplitude-only hologram (AOH). By integrating the single-sideband filtering principle with the angular-spectrum theory, the conjugate term of AOH can be directly separated during propagation, eliminating the need for additional filtering while reducing computational load. The specialized optimization applies the process repeatedly, imposing constraints in both spatial and frequency domains, termed single-sideband angular spectrum iteration. This method enhances the efficiency of AOH optimization and significantly mitigates speckle noise interference. Simulation results demonstrate that the PSNR of reconstructed images doubled, with optical experiments validating the effectiveness. Compared to conventional AOH, our approach achieves 3D reconstructions with superior image quality. It is anticipated that this method will facilitate the future application and advancement of speckle-free, amplitude-modulated holographic 3D display.
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