Phase contrast metrology using digital in-line holography: General models and reconstruction of phase discontinuities
General models are developed to describe in-line digital phase contrast experiments. They link analytically the reconstruction process and the different parameters of the set-up. Reconstructions of phase discontinuities are realized using 2 Dimensional-Fractional Fourier Transforms (2D-FRFT). They g...
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Published in: | Journal of quantitative spectroscopy & radiative transfer Vol. 126; pp. 113 - 121 |
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Abstract | General models are developed to describe in-line digital phase contrast experiments. They link analytically the reconstruction process and the different parameters of the set-up. Reconstructions of phase discontinuities are realized using 2 Dimensional-Fractional Fourier Transforms (2D-FRFT). They give the 3D position and the dimension of the phase object, and the phase shift introduced. Experimental results and simulations are in good concordance. The technique can be used with monochromatic or with large spectrum laser sources.
► General models are developed to describe in-line digital phase contrast experiments. ► Models use generalized Huygens-Fresnel integrals and transfer matrices. ► Models are extended to the femtosecond illumination regime. ► Digital reconstructions are done with the fractional Fourier transformation. |
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AbstractList | General models are developed to describe in-line digital phase contrast experiments. They link analytically the reconstruction process and the different parameters of the set-up. Reconstructions of phase discontinuities are realized using 2 Dimensional-Fractional Fourier Transforms (2D-FRFT). They give the 3D position and the dimension of the phase object, and the phase shift introduced. Experimental results and simulations are in good concordance. The technique can be used with monochromatic or with large spectrum laser sources.
► General models are developed to describe in-line digital phase contrast experiments. ► Models use generalized Huygens-Fresnel integrals and transfer matrices. ► Models are extended to the femtosecond illumination regime. ► Digital reconstructions are done with the fractional Fourier transformation. General models are developed to describe in-line digital phase contrast experiments. They link analytically the reconstruction process and the different parameters of the set-up. Reconstructions of phase discontinuities are realized using 2 Dimensional-Fractional Fourier Transforms (2D-FRFT). They give the 3D position and the dimension of the phase object, and the phase shift introduced. Experimental results and simulations are in good concordance. The technique can be used with monochromatic or with large spectrum laser sources. |
Author | Lebrun, D. Coetmellec, S. Ait Ameur, K. Brunel, M. Shen, H. |
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Cites_doi | 10.1364/JOSAA.14.001774 10.1364/AO.51.001137 10.1364/OE.18.007807 10.1364/AO.48.000579 10.1364/JOSAA.4.001931 10.1364/JOSAA.10.002181 10.1364/AO.50.000H22 10.1146/annurev-fluid-121108-145508 10.1016/j.optmat.2006.07.010 10.1016/j.optcom.2003.09.046 10.1364/AO.50.002228 10.1364/AO.38.006994 10.1364/AO.47.004147 10.1364/AO.37.007933 10.1093/imamat/25.3.241 10.1364/OE.20.010996 10.1093/imamat/39.2.159 10.1121/1.396508 |
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Keywords | Digital holography Digital phase contrast Transfer matrices Fractional Fourier transform |
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SubjectTerms | Digital holography Digital phase contrast Fractional Fourier transform Transfer matrices |
Title | Phase contrast metrology using digital in-line holography: General models and reconstruction of phase discontinuities |
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