Axial-resolution in depth from focus digital holography

Conference Paper (2017)
Author(s)

Jos van Rooij (TU Delft - ImPhys/Quantitative Imaging)

Jeroen Kalkman (TU Delft - ImPhys/Quantitative Imaging)

Research Group
ImPhys/Quantitative Imaging
Copyright
© 2017 J. van Rooij, J. Kalkman
DOI related publication
https://doi.org/10.1117/12.2270295
More Info
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Publication Year
2017
Language
English
Copyright
© 2017 J. van Rooij, J. Kalkman
Research Group
ImPhys/Quantitative Imaging
ISBN (print)
978-1-5106-1115-3
Reuse Rights

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Abstract

We use digital holography to quantify surface topography of rough objects in full-field. We calculate the variance of the intensity image as a focus metric over a set of reconstruction distances for each pixel, which results in a focus metric curve. The distance where the variance peaks is an estimate for the depth. First we analyze the lateral resolution of this method using the Talbot effect and argue that sub-mm axial resolution is feasible. Then, using a Michelson setup without magnifying optics or lateral scanning we experimentally demonstrate that sub-mm FWHM width of the focus curve can be achieved. This is significantly better than what was previously reported using digital holography and could make this technique useful for characterising objects in art and machine vision.

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