全息术
相位恢复
反问题
物理
傅里叶变换
对称(几何)
核(代数)
相位共轭
压缩传感
共轭梯度法
光学
计算机科学
迭代重建
算法
数学分析
人工智能
激光器
几何学
量子力学
数学
组合数学
作者
Wenhui Zhang,Liangcai Cao,David J. Brady,Hua Zhang,Ji Cang,Hao Zhang,Guofan Jin
标识
DOI:10.1103/physrevlett.121.093902
摘要
Holographic reconstruction is troubled by the phase-conjugate wave front arising from Hermitian symmetry of the complex field. The so-called twin image obfuscates the reconstruction in solving the inverse problem. Here we quantitatively reveal how and how much the twin image affects the reconstruction and propose a compressive sensing (CS) approach to reconstruct a hologram completely free from the twin image. Using the canonical basis, the incoherence condition of CS is naturally satisfied by the Fourier transformation associated with wave propagation. With the propagation kernel function related to the distance, the object wave diffracts into a sharp pattern while the phase-conjugate wave diffracts into a diffuse pattern. An iterative algorithm using a total variation sparsity constraint could filter out the diffuse conjugated signal and overcome the inherent physical symmetry of holographic reconstruction. The feasibility is verified by simulation and experimental results, as well as a comparative study to an existing phase retrieval method.
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