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

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Article
English
2018

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

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English
2018
Applied Optics
Vol 58 (5)
DOI: 10.1364/ao.58.00a101

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Alberto Patino Vanegas
Alberto Patino Vanegas

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Hernando Altamar-Mercado
Alberto Patino Vanegas
Andrés G. Marrugo

Abstract

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 Ra = 0.05 {\mu}m for which we measured an average value of Ra = 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.

How to cite this publication

Hernando Altamar-Mercado, Alberto Patino Vanegas, Andrés G. Marrugo (2018). Robust 3D surface recovery by applying a focus criterion in white light scanning interference microscopy. Applied Optics, 58(5), pp. A101-A101, DOI: 10.1364/ao.58.00a101.

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Publication Details

Type

Article

Year

2018

Authors

3

Datasets

0

Total Files

0

Language

English

Journal

Applied Optics

DOI

10.1364/ao.58.00a101

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