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Phase mapping and wavefront analysis based on multi-illumination light fields generated by a spatial light modulator

机译:基于空间光调制器产生的多照明光场的相位映射和波前分析

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We present a new multi-illumination technique for the determination of the phase maps of unknown phase objects and wavefronts based on their diffraction patterns. A spatial light modulator is used to generate a sequence of probe-light fields that illuminate the unknown object producing different diffraction patterns. Compared with similar diffraction-pattern-based approaches, our technique benefits from a motionless multiview operation and a significantly improved deconvolution algorithm convergence speed (tens of iterations versus hundreds). Computer simulations indicate that the extra information brought by the different diffraction patterns prevents convergence of the phase retrieval algorithm to spurious local minima solutions and results in faster convergence. We describe an experimental system built based on our approach using readily available, relatively low-cost components. Successful reconstructions of test targets from experimental diffraction patterns confirm the feasibility of the technique. Major sources of error are identified, solutions to these problems suggested, and potential extensions to multiresolution analysis of unknown wavefronts are proposed.
机译:我们提出了一种新的多重照明技术,用于根据未知的相位对象和波阵面的衍射图确定相位图。空间光调制器用于生成一系列探测光场,这些探测光场照亮未知对象,并产生不同的衍射图样。与类似的基于衍射图样的方法相比,我们的技术受益于一动不动的多视图操作和显着提高的去卷积算法收敛速度(迭代次数为数百,而迭代次数为数百)。计算机仿真表明,不同衍射图样带来的额外信息会阻止相位检索算法收敛到虚假的局部极小值解,并导致更快的收敛。我们描述了一种基于我们的方法的实验系统,该系统使用了现成的,成本相对较低的组件。从实验衍射图成功重建测试目标,证实了该技术的可行性。确定错误的主要来源,提出解决这些问题的方法,并提出对未知波前的多分辨率分析的潜在扩展。

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