Abstract
A major advantage of wavefront reconstruction based on a series of diffracted intensity images using only single-beam illumination is the simplicity of setup. Here we propose a fast-converging algorithm for wavefront calculation using single-beam illumination. The captured intensity images are resampled to a series of intensity images, ranging from highest to lowest resampling; each resampled image has half the number of pixels as the previous one. Phase calculation at a lower resolution is used as the initial solution phase at a higher resolution. This corresponds to separately calculating the phase for the lower-and higher-frequency components. Iterations on the low-frequency components do not need to be performed on the higher-frequency components, thus making the convergence of the phase retrieval faster than with the conventional method. The principle is verified by both simulation and optical experiments.
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CITATION STYLE
Chen, N., Yeom, J., Hong, K., Li, G., & Lee, B. (2014). Fast-converging algorithm for wavefront reconstruction based on a sequence of diffracted intensity images. Journal of the Optical Society of Korea, 18(3), 217–224. https://doi.org/10.3807/JOSK.2014.18.3.217
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