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High-resolution scanning phase retrieval with a probe beam of unknown modulus

机译:使用未知模量的探测光束进行高分辨率扫描相位检索

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摘要

A high-resolution phase-retrieval method for an imaging system with scanning illumination that is capable of reconstructing the modulus and phase of an object without a holographic reference wave is proposed. Reconstruction involves the synthesis of the reconstructed objects from the data of zero- and higher-frequency components of two Fourier intensity measurements: the Fourier intensity of the product of the object and a probe beam that is scanned across the object and the Fourier intensity of the product of the object and a probe beam that is modulated with an exponential filter. This method improves on the resolution of a reconstructed object by previous methods that make use of the data of only the zero-frequency components of the two Fourier intensities. In addition, phase retrieval in the scanning-illumination system with a probe of unknown modulus can be treated by use of the synthetic procedure, provided the phase of the probe function is a constant or a known distribution. Computer-simulated examples of the reconstruction of one- and two-dimensional complex objects demonstrate that reconstruction is robust. (C) 1997 Optical Society of America.
机译:提出了一种具有扫描照明的成像系统的高分辨率相位检索方法,该方法能够在没有全息参考波的情况下重建物体的模量和相位。重建涉及从两个傅立叶强度测量的零频和高频分量数据合成重建的对象:对象乘积和在整个对象上扫描的探测光束的乘积的傅立叶强度以及物体的傅立叶强度。物体和用指数滤波器调制的探测光束的乘积。该方法通过仅利用两个傅立叶强度的零频率分量的数据的先前方法改善了重建对象的分辨率。此外,只要探针功能的相位是恒定的或已知的分布,就可以使用合成程序来处理具有未知模量的探针的扫描照明系统中的相位恢复。一维和二维复杂对象的重建的计算机模拟示例表明,重建具有鲁棒性。 (C)1997年美国眼镜学会。

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