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Robust 3D surface recovery by applying a focus criterion in white light scanning interference microscopy

机译:通过在白光扫描干扰显微镜中施加焦点标准来鲁棒3D表面恢复

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摘要

White light scanning interference (WLSI) microscopes provide an accurate surface topography of engineered surfaces. However, the measurement accuracy is substantially reduced in surfaces with low-reflectivity regions or high roughness, like a surface affected by corrosion. An alternative technique called shape from focus (SFF) takes advantage of the surface texture to recover the 3D surface by using a focus metric through a vertical scan. In this work, we propose a technique called SFF-WLSI, which consists of recovering the 3D surface of an object by applying the Tenegrad Variance (TENV) focus metric to WLSI images. Extensive simulation results show that the proposed technique yields accurate measurements under different surface roughness and surface reflectivity, outperforming the conventional WLSI and the SFF techniques. We validated the simulation results on two real objects with a Mirau-type microscope. The first was a flat lapping specimen with R-a = 0.05 mu m for which we measured an average value of R-a = 0.055 mu m and standard deviation sigma = 0.008 mu m. The second was a metallic sphere with corrosion, which we reconstructed with WLSI versus the proposed SFF-WLSI technique, producing a better 3D reconstruction with less undefined depth values. (C) 2018 Optical Society of America
机译:白光扫描干扰(WLSI)显微镜提供工程表面的精确表面形貌。然而,测量精度在具有低反射区或高粗糙度的表面中显着减小,如受腐蚀的影响。一种替代技术,称为来自焦点(SFF)的形状利用表面纹理来通过使用垂直扫描使用焦距来恢复3D表面。在这项工作中,我们提出了一种称为SFF-WLSI的技术,该技术包括通过将Tenegrad方差(Tenv)对焦度量应用于WLSI图像来恢复对象的3D表面。广泛的仿真结果表明,该技术在不同的表面粗糙度和表面反射率下产生精确的测量,优于传统的WLSI和SFF技术。我们通过Mirau型显微镜验证了两个真实物体上的模拟结果。第一是具有R-A =0.05μm的平面研磨样本,我们测量了R-A =0.055μm的平均值和标准偏差Sigma =0.008μm。第二个是具有腐蚀的金属球体,我们用WLSI重建而具有所提出的SFF-WLSI技术,产生更好的3D重建,具有较少未定义的深度值。 (c)2018年光学学会

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