White light colour fringe analysis for surface profiling
Single wavelength interferometry is a useful tool in the area of optical profilometry given its high sensitivity and resolution. However, its major drawbacks include its inability to quantify surface discontinuities and deformations that are greater than half a wavelength unambiguously. Nevertheless...
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sg-ntu-dr.10356-785142023-03-03T15:37:47Z White light colour fringe analysis for surface profiling Ayisha Fathima Feroze Mohamed Arif Manojit Pramanik School of Chemical and Biomedical Engineering DRNTU::Engineering::Bioengineering Single wavelength interferometry is a useful tool in the area of optical profilometry given its high sensitivity and resolution. However, its major drawbacks include its inability to quantify surface discontinuities and deformations that are greater than half a wavelength unambiguously. Nevertheless, multiple wavelength and white light interferometric techniques, with colour CCD cameras, have proven to be powerful alternatives that not only overcome the drawbacks of single wavelength interferometry but are also more effective in terms of being able to acquire multiple interference patterns simultaneously and producing high quality images. As such this report reviews the various multiple wavelength and white light interferometric techniques and discusses about how the phase shifting technique has been utilized as a phase evaluation procedure in order to ascertain the profile of the test surface without unambiguity. It should be noted that the various methods are reviewed on the basis that the test surface has a smooth profile Fundamental concepts such as those regarding interferometry, CCD cameras and cross talk have been gone through in this report for readers to gain good understanding of the review. At the end of this report readers will get to appreciate the developments in multi-colour interferometric techniques and their importance. Bachelor of Engineering (Bioengineering) 2019-06-21T01:26:41Z 2019-06-21T01:26:41Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/78514 en Nanyang Technological University 41 p. application/pdf |
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Single wavelength interferometry is a useful tool in the area of optical profilometry given its high sensitivity and resolution. However, its major drawbacks include its inability to quantify surface discontinuities and deformations that are greater than half a wavelength unambiguously. Nevertheless, multiple wavelength and white light interferometric techniques, with colour CCD cameras, have proven to be powerful alternatives that not only overcome the drawbacks of single wavelength interferometry but are also more effective in terms of being able to acquire multiple interference patterns simultaneously and producing high quality images. As such this report reviews the various multiple wavelength and white light interferometric techniques and discusses about how the phase shifting technique has been utilized as a phase evaluation procedure in order to ascertain the profile of the test surface without unambiguity. It should be noted that the various methods are reviewed on the basis that the test surface has a smooth profile Fundamental concepts such as those regarding interferometry, CCD cameras and cross talk have been gone through in this report for readers to gain good understanding of the review. At the end of this report readers will get to appreciate the developments in multi-colour interferometric techniques and their importance. |
author2 |
Manojit Pramanik |
author_facet |
Manojit Pramanik Ayisha Fathima Feroze Mohamed Arif |
format |
Final Year Project |
author |
Ayisha Fathima Feroze Mohamed Arif |
author_sort |
Ayisha Fathima Feroze Mohamed Arif |
title |
White light colour fringe analysis for surface profiling |
title_short |
White light colour fringe analysis for surface profiling |
title_full |
White light colour fringe analysis for surface profiling |
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White light colour fringe analysis for surface profiling |
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White light colour fringe analysis for surface profiling |
title_sort |
white light colour fringe analysis for surface profiling |
publishDate |
2019 |
url |
http://hdl.handle.net/10356/78514 |
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1759856431812575232 |