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Suppression of phase ambiguity in digital holography by using partial coherence or specimen rotation

机译:通过使用部分相干或样本旋转来抑制数字全息术中的相位模糊性

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摘要

In this paper we present two approaches for extracting the surface profile as well as obtaining 3D imaging of near field objects by usage of partial coherence and digital holography. In the first approach a light source with given temporal partial coherence is used to illuminate a near field object. The reflected light is interfered with the reference source. By computing the local contrast of the generated fringes one may estimate the 3D topography and the profile of the object. This approach extracts the 3D information from a single image, and its accuracy does not depend on triangulation angle like in fringe projection methods. The second approach is tomography based. There we illuminate the object from several slightly different angles, and for each we compute the wrapped phase using digital holography techniques. Combining the wrapped phase estimation from several points of projection allows calculating the unwrapped phase and therefore the true profile of even a phase-only object. Increasing the number of points of view decreases the relative error of the estimated profile.
机译:在本文中,我们提出了两种使用部分相干和数字全息技术提取表面轮廓以及获得近场物体3D成像的方法。在第一种方法中,具有给定时间局部相干性的光源用于照亮近场物体。反射光会干扰参考源。通过计算产生的条纹的局部对比度,可以估计3D地形和物体的轮廓。这种方法从单个图像中提取3D信息,其准确性不像条纹投影方法那样取决于三角角度。第二种方法是基于断层扫描。在那里,我们从几个略有不同的角度照亮了对象,对于每个角度,我们都使用数字全息技术计算了包裹相位。将来自多个投影点的包裹相位估计结合起来,可以计算出包裹相位,甚至是仅相位对象的真实轮廓。增加视点数量会减少估计轮廓的相对误差。

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