Rotational diffuser for speckle reduction in quantitative phase imaging

Jeeranan Boonruangkan, H. Farrokhi, Young‐Jin Kim
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引用次数: 2

Abstract

A well-known speckle which comes from the coherent property of laser source has limited the laser imaging application. Quantitative Phase Imaging (QPI) also suffers from this speckle noise when illuminate with coherent source. A rotational diffuser is a considerable method to minimize the speckle by averaging the speckle contrast in time. Here, we employ the dual optical diffuser-static and moving diffusers — to suppress speckle noise in QPI. Continuous-wave laser is used to illuminate polystyrene micro-bead as a sample. Due to the averaging independent speckle pattern, speckle noise in phase image is reduced by maintaining the quality of fringe. The ability of moving diffuser in speckle noise suppression is presented in Fourier domain via Fast Fourier Transform (FFT) technique and topographic phase map. This work proposes a valuable technique for efficient suppression of the coherent speckle in QPI.
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定量相位成像中用于减少散斑的旋转扩散器
由于激光源的相干性而产生的众所周知的散斑限制了激光成像的应用。在相干光源照射下,定量相位成像(QPI)也受到这种散斑噪声的影响。旋转扩散器是一种通过平均散斑对比度来最小化散斑的有效方法。在这里,我们采用双光扩散器-静态和移动扩散器-来抑制QPI中的散斑噪声。用连续波激光照射聚苯乙烯微珠样品。由于平均独立的散斑模式,在保持条纹质量的前提下降低了相位图像中的散斑噪声。通过快速傅里叶变换(FFT)技术和地形相位图,在傅里叶域中提出了移动扩散器抑制散斑噪声的能力。本文提出了一种有效抑制QPI相干散斑的技术。
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