METHOD OF INTERFERENCE PHASE MAPS ITERATIVE CALCULATION FOR MULTI-WAVELENGTH DIGITAL HOLOGRAPHY SYSTEMS

Authors

  • R. Yu. Dovhaliuk Vinnytsia National Technical University

Keywords:

digital holography, interferogram, non-destructive testing, holographic contouring, two-wavelength method, two-wavelength interferometry

Abstract

In this paper a ways of an analog and digital holography usage in nondestructive testing are reviewed. The solution for optical path distance measurement range extension in multiple-wavelength holography systems is shown based on the presented method of interference phase maps iterative computation. A modeling of such method in the case of a three-wavelength digital holography system in MATLAB environment is carried out.

Author Biography

R. Yu. Dovhaliuk, Vinnytsia National Technical University

graduate faculty laser and optoelectronic technology

References

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C. Depeursinge // Optics Express. — 2007. — Vol. 15(12). — P. 7231—7242.
10. Pascal P. High-resolution digital two-color holographic metrology / P. Pascal, M. Denis, D. Jean-Michel // Optics Letters. — 2008. — Vol. 33(3). — P. 276—278.
11. Yamaguchi I. Phase-shifting color digital holography / I. Yamaguchi, T. Matsumura, J. Kato // Optics Letters. — 2002. — Vol. 27(13). — P. 1108—1110.
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==============REFERENCES===============
1. Schnars U. Digital Holography and Wavefront Sensing: Principles, Techniques and Applications / U. Schnars, C. Falldorf, J. Watson, W. Jüptner. — Springer, 2014. — 226 p.
2. Holographic nondestructive research: Transl. from Eng. / Transl. by V. A. Egorov, V. A. Karasev: Ed. by V. A. Karasev. — M. : Mashinostroenie, 1979. — 448 p.
3. Schnars U. Digital Holography: Digital Hologram Recording, Numerical Reconstruction, and Related Techniques / U. Schnars, W. Juptner. — Springer, 2005. — 164 p.
4. Thomas Kreis Handbook of Holographic Interferometry — Optical and Digital Methods / Thomas Kreis. — Wiley-VCH, 2004. — 554 p.
5. Friesem A. A. Fringe formation in two-wavelength contour holography / A. A. Friesem, U. Levy // Applied Optics. — 1976. — Vol. 15, No. 12. — P. 3009—3020.
6. Schnars U. Digital recording and numerical reconstruction of holograms / U. Schnars, W. Jüptner // Measurement Science and Technology. — 2002. — Vol. 13, No. 9. — P. 85—101.
7. Wyant J. C. Testing Aspherics Using Two-Wavelength Holography / J. C. Wyant // Applied Optics. — 1971. — Vol. 10, Issue 9. — P. 2113—2118.
8. Wolfgang O. Absolute shape control of microcomponents using digital holography and multiwavelength contouring / O. Wolfgang, S. Soenke, B. Torsten, J. Werner // Proceedings of SPIE: Metrology-based Control for Micro-Manufacturing. — 2001. — Vol. 4275. — P. 71—84.
9. Kühn J. Real-time dual-wavelength digital holographic microscopy with a single hologram acquisition / J. Kühn, T. Colomb, F. Montfort, F. Charrière, Y. Emery, E. Cuche, P. Marquet,
C. Depeursinge // Optics Express. — 2007. — Vol. 15(12). — P. 7231—7242.
10. Pascal P. High-resolution digital two-color holographic metrology / P. Pascal, M. Denis, D. Jean-Michel // Optics Letters. — 2008. — Vol. 33(3). — P. 276—278.
11. Yamaguchi I. Phase-shifting color digital holography / I. Yamaguchi, T. Matsumura, J. Kato // Optics Letters. — 2002. — Vol. 27(13). — P. 1108—1110.
12. Three-CCD camera [Electronic resource]. — Access: https://en.wikipedia.org/wiki/ThreeCCD_camera. — Title is from screen. — Date of access: 18.05.2016.
13. 2D and 3D Perlin Noise in MATLAB [Electronic resource]. — Access: http://www.semifluid.com/2012 /12/05/2d-and-3d-perlin-noise-in-matlab/. — Title is from screen. — Date of access: 18.05.2016.

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Published

2017-04-07

How to Cite

[1]
R. Y. Dovhaliuk, “METHOD OF INTERFERENCE PHASE MAPS ITERATIVE CALCULATION FOR MULTI-WAVELENGTH DIGITAL HOLOGRAPHY SYSTEMS”, Опт-ел. інф-енерг. техн., vol. 31, no. 1, pp. 55–64, Apr. 2017.

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Section

Optical-Electronic Devices and Components in Laser and Energy Technologies

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