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Three-dimensional surface contouring of macroscopic objects by means of phase-difference images

机译:借助相差图像对宏观物体进行三维表面轮廓

摘要

We report a technique to determine the 3D contour of objects with dimensions of at least 4 orders of magnitude larger than the illumination optical wavelength. Our proposal is based on the numerical reconstruction of the optical wave field of digitally recorded holograms. The required modulo 2 phase map in any contouring process is obtained by means of the direct subtraction of two phase-contrast images under different illumination angles to create a phase-difference image of a still object. Obtaining the phase-difference images is only possible by using the capability of numerical reconstruction of the complex optical field provided by digital holography. This unique characteristic leads us to a robust, reliable, and fast procedure that requires only two images. A theoretical analysis of the contouring system is shown, with verification by means of numerical and experimental results. © 2006 Optical Society of America
机译:我们报告了一种确定尺寸大于照明光波长至少4个数量级的对象的3D轮廓的技术。我们的建议是基于数字记录的全息图的光场的数值重建。通过在不同照明角度下直接相减两个相位对比图像以创建静止物体的相位差图像,可以获得在任何轮廓绘制过程中所需的模2相位图。只有通过使用数字全息技术提供的复杂场的数值重建功能,才能获得相差图像。这种独特的特征使我们能够进行健壮,可靠和快速的过程,仅需要两张图像。给出了轮廓系统的理论分析,并通过数值和实验结果进行了验证。 ©2006美国眼镜学会

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