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Digital holographic microscopy with reduced spatial coherence for three-dimensional particle flow analysis

机译:具有降低空间相干性的数字全息显微镜,用于三维粒子流分析

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摘要

We investigate the use of a digital holographic microscope working in partially coherent illumination to study in three dimensions a micrometer-size particle flow. The phenomenon under investigation rapidly varies in such a way that it is necessary to record, for every camera frame, the complete holographic information for further processing. For this purpose, we implement the Fourier-transform method for optical amplitude extraction. The suspension of particles is flowing in a split-flow lateral-transport thin separation cell that is usually used to separate the species by their sizes. Details of the optical implementation are provided. Examples of reconstructed images of different particle sizes are shown, and a particle-velocity measurement technique that is based on the blurred holographic image is exploited.
机译:我们研究在部分相干照明下工作的数字全息显微镜的使用,以便在三个维度上研究微米级的粒子流。被调查的现象以这样一种方式迅速变化,即必须为每个摄像机帧记录完整的全息信息以进行进一步处理。为此,我们实现了傅里叶变换方法来进行光幅度提取。颗粒的悬浮液在分流横向传输的薄分离池中流动,该分离池通常用于按其大小分离物种。提供了光学实现的细节。示出了不同粒度的重建图像的示例,并且利用了基于模糊全息图像的粒子速度测量技术。

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