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Speckle-illuminated Fourier ptychography: analysis of diffuser roughness and reconstruction aperture on imaging performance

机译:散斑照明的傅立叶PTychography:分析扩散器粗糙度和成像性能的重建孔径

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摘要

With a fundamentally modified structural illumination algorithm, the recently proposed speckle-illuminated Fourier ptychography can be a promising superresolution imaging technique with a large field of view. However, its imaging performance, including image resolution and signal-to-noise ratio, has been discussed less, limiting its further applications. Thus, an in-depth study of this new imaging technique is highly required. In this paper, with theoretical analysis, numerical simulations, and experiments, the influence of both diffuser roughness in the experimental setup and numerical aperture size in iterative reconstruction on the imaging performance of speckle-illuminated Fourier ptychography was studied in detail, and the result explained why a rougher diffuser and larger reconstruction aperture can generate a higher-resolution image with more noise and showed how to get optimized diffuser roughness and reconstruction aperture size by considering the trade-off between imaging resolution and signal-to-noise ratio. This work may be a good reference for high-quality imaging using speckle-illuminated Fourier ptychography. (C) 2020 Optical Society of America
机译:利用基本修改的结构照明算法,最近提出的斑点照射傅立叶PTychography可以是具有大视野的有希望的超级化成像技术。然而,它的成像性能(包括图像分辨率和信噪比)已经较少,限制了其进一步的应用。因此,非常需要对这种新成像技术的深入研究。在本文中,详细研究了具有理论分析,数值模拟和实验,对实验设置和数值孔径尺寸的漫射器粗糙度对散斑的傅立叶扫描的成像性能的实验设置和数值孔径尺寸的影响,结果说明了为什么更令人讨厌的扩散器和较大的重建孔可以通过考虑成像分辨率和信噪比之间的折衷来产生更多噪声的更高分辨率图像,并显示了如何通过考虑折衷来获得优化的扩散器粗糙度和重建孔径尺寸。这项工作可能是使用斑点照明傅立叶PTYCHOGAGE的高质量成像的良好参考。 (c)2020美国光学学会

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    《Applied optics》 |2020年第7期|共10页
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