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首页> 外文期刊>Optics and Lasers in Engineering >Phase retrieval exact solution based on structured window modulation without direct reference waves
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Phase retrieval exact solution based on structured window modulation without direct reference waves

机译:基于无直接参考波的结构化窗口调制的相位恢复精确解决方案

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摘要

Arising in coherent diffraction imaging (CDI), the phase retrieval problem is to reconstruct a complex object by measuring only diffraction intensity patterns. Existing approaches, such as iterative Fourier algorithm (IFA), transport intensity equation (TIE) methods and matrix optimisation, result in near-optimal solutions rather than exact solutions. This paper proposes an analytic method to get the exact phase retrieval solution without relying on direct reference waves. Based on structured template windows, the object far-field phase is solved analytically from the recorded Fourier intensities, from which the exact object reconstruction can be achieved. Sufficient conditions for obtaining exact phase retrieval solution are analysed rigorously and verified by numerical simulations, which also show the robustness of the method through simulations under noises, dynamic range, nonlinear response and bad alignment. A simple experimental result is provided to demonstrate the practical feasibility of the method. It achieves analytic phase retrieval for arbitrary complex-valued objects and may be applicable to quick phase imaging.
机译:在相干衍射成像(CDI)中产生的相位检索问题是仅通过测量衍射强度图案来重建复杂的物体。现有的方法,例如迭代傅立叶算法(IFA),传输强度方程(TIE)方法和矩阵优化,导致了接近最优的解决方案,而不是精确的解决方案。本文提出了一种不依赖直接参考波就能获得精确相位恢复解的解析方法。基于结构化的模板窗口,可以从记录的傅立叶强度解析地解决物体远场相位,从而可以实现精确的物体重建。严格分析了获得精确相位恢复解的充分条件,并通过数值仿真进行了验证,这也通过在噪声,动态范围,非线性响应和不良对准情况下的仿真来证明该方法的鲁棒性。提供了一个简单的实验结果,证明了该方法的实际可行性。它可以实现任意复数值对象的解析相位检索,并且可能适用于快速相位成像。

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