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Experimental validation for the determination of particle positions by the correlation coefficient method in digital particle holography

机译:数字粒子全息中相关系数法确定粒子位置的实验验证

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摘要

The feasibility and the accuracy of the correlation coefficient (CC) method for the determination of particle positions along the optical axis in digital particle holography were verified by validation experiments. A translation system capable of high precision was used to move the particle objects by exact known distances between several different positions. The particle positions along the optical axis were calculated by the CC method and compared with their exact values to obtain the errors of the focus plane determination. The tested particles were two-dimensional (2D) dots in a calibration target along with different-sized glass beads and droplets that reflected and caused a three-dimensional (3D) effect. The results show that the CC method can work well for both the 2D dots and the 3D particles. The effect of other particles on the focus plane determination was also investigated. The CC method can locate the focus plane of particles with high precision, regardless of the existence of other particles.
机译:通过验证实验,验证了相关系数法在数字粒子全息中确定沿光轴位置的可行性和准确性。使用具有高精度的平移系统将粒子对象移动几个不同位置之间的确切已知距离。通过CC方法计算沿光轴的粒子位置,并将其与精确值进行比较,以获得聚焦平面确定的误差。测试的粒子是校准目标中的二维(2D)点,以及反射并引起三维(3D)效应的不同尺寸的玻璃珠和液滴。结果表明,CC方法对于2D点和3D粒子均适用。还研究了其他颗粒对焦平面测定的影响。 CC方法可以高精度地定位粒子的焦平面,而与其他粒子的存在无关。

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