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首页> 外文期刊>Applied optics >DISCRETE RECONSTRUCTION OF REAL PHASE OBJECTS - A COMPARISON WITH COMPUTER-SIMULATED PHASE OBJECTS
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DISCRETE RECONSTRUCTION OF REAL PHASE OBJECTS - A COMPARISON WITH COMPUTER-SIMULATED PHASE OBJECTS

机译:实相对象的离散重构-与计算机模拟相对象的比较

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摘要

The Gerchberg-Saxton algorithm for iterative phase retrieval is applied in reconstructing an optical wave arriving from a coherently illuminated phase object. Computer simulations show that the algorithm converges to the correct solution when magnitude information for both image and Fourier domains is provided. Phase retrieval from measured intensities in an experimental optical system is compared with the simulations. Charge-coupled-device sensors, in which the output voltage is a nonlinear function of the light intensity, are used to perform measurements of the quasi magnitude information. Because of the accuracy of the measured data, phase retrieval. for real simple objects is possible, and schlieren images can be generated on the computer screen. (C) 1995 Optical Society of America [References: 14]
机译:用于迭代相位检索的Gerchberg-Saxton算法被用于重建从相干照亮的相位对象到达的光波。计算机仿真表明,当同时提供图像域和傅立叶域的幅度信息时,该算法收敛到正确的解。将来自实验光学系统中测量强度的相位检索与仿真进行比较。电荷耦合器件传感器的输出电压是光强度的非线性函数,用于执行准幅值信息的测量。由于测量数据的准确性,需要进行相位检索。真正简单的对象是可能的,并且可以在计算机屏幕上生成schlieren图像。 (C)1995年美国眼镜学会[参考文献:14]

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