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首页> 外文期刊>Optics Letters >High-accuracy three-dimensional position measurement of tens of micrometers size transparent microspheres using digital in-line holographic microscopy
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High-accuracy three-dimensional position measurement of tens of micrometers size transparent microspheres using digital in-line holographic microscopy

机译:使用数字在线全息显微镜对数十微米大小的透明微球进行高精度三维位置测量

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摘要

Digital in-line holographic microscopy has a strong potential in measuring various three-dimensional (3D) micro-scale flow phenomena. However, the axial elongation problem in reconstructing particles severely degrades the measurement accuracy along the light propagation direction. In this Letter, we utilize the lenslike characteristic of tens of micrometers size transparent spherical particles to extract their 3D position. A sharp intensity peak is observed in the reconstructed wave field, resulting from the light-focusing effect of the particle. As a result, the depth-of-focus constraint caused by the particle size is eliminated and the measurement accuracy is drastically improved up to submicrometer resolution.
机译:数字在线全息显微镜在测量各种三维(3D)微米级流动现象方面具有强大的潜力。但是,重构粒子时的轴向伸长问题严重地降低了沿光传播方向的测量精度。在这封信中,我们利用了数十微米大小的透明球形颗粒的透镜状特征来提取其3D位置。由于粒子的聚光作用,在重构的波场中观察到了陡峭的强度峰。结果,消除了由粒径引起的聚焦深度限制,并且测量精度大大提高到亚微米分辨率。

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