Davidoiu Valentina, Sixou Bruno, Langer Max, Peyrin Francoise
Université de Lyon, CREATIS, CNRS UMR5220, Inserm U1044, INSA-Lyon, Université Lyon 1, Lyon, France.
Appl Opt. 2013 Jun 10;52(17):3977-86. doi: 10.1364/AO.52.003977.
The phase retrieval process is a nonlinear ill-posed problem. The Fresnel diffraction patterns obtained with hard x-ray synchrotron beam can be used to retrieve the phase contrast. In this work, we present a convergence comparison of several nonlinear approaches for the phase retrieval problem involving regularizations with sparsity constraints. The phase solution is assumed to have a sparse representation with respect to an orthonormal wavelets basis. One approach uses alternatively a solution of the nonlinear problem based on the Fréchet derivative and a solution of the linear problem in wavelet coordinates with an iterative thresholding. A second method is the one proposed by Ramlau and Teschke which generalizes to a nonlinear problem the classical thresholding algorithm. The algorithms were tested on a 3D Shepp-Logan phantom corrupted by white Gaussian noise. The best simulation results are obtained by the first method for the various noise levels and initializations investigated. The reconstruction errors are significantly decreased with respect to the ones given by the classical linear phase retrieval approaches.
相位恢复过程是一个非线性不适定问题。利用硬X射线同步辐射束获得的菲涅耳衍射图样可用于恢复相位对比度。在这项工作中,我们对几种涉及具有稀疏约束正则化的相位恢复问题的非线性方法进行了收敛性比较。假设相位解相对于正交小波基具有稀疏表示。一种方法交替使用基于弗雷歇导数的非线性问题的解和小波坐标下具有迭代阈值处理的线性问题的解。第二种方法是Ramlau和Teschke提出的方法,它将经典阈值算法推广到非线性问题。这些算法在被白色高斯噪声破坏的三维Shepp-Logan体模上进行了测试。对于所研究的各种噪声水平和初始化情况,第一种方法获得了最佳模拟结果。相对于经典线性相位恢复方法给出的重建误差,重建误差显著降低。