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Fast-convergent algorithm for speckle-based phase retrieval and a design for dynamic wavefront sensing

机译:基于散斑的相位算法的快速收敛算法和动态波前感测设计

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摘要

Wavefront reconstruction is carried out using sequentially recorded speckle patterns and an iterative phase retrieval method based on wave propagation. A novel fast-convergent algorithm that maintains the propagation distance in the iteration step equal to the distance between measurement planes is demonstrated. Employing the new algorithm, influences of the number of measurement planes, number of iterations, and uncertainties in the detector's transverse and axial positions on the rate of phase convergence are analyzed experimentally. A conceptual design for a dynamic wavefront sensor using arrays of beam splitters and detectors for parallel speckle recording is described.
机译:使用顺序记录的斑点图案和​​基于波传播的迭代相位检索方法进行波前重建。演示了一种新颖的快速收敛算法,该算法将迭代步骤中的传播距离保持为与测量平面之间的距离相等。使用新算法,实验分析了测量平面的数量,迭代次数以及检测器的横向和轴向位置的不确定性对相位收敛速度的影响。描述了一种动态波前传感器的概念设计,该传感器使用分束器和探测器阵列进行并行散斑记录。

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