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Spatial-carrier phase-shifting digital holography utilizing spatial frequency analysis for the correction of the phase-shift error
We propose a single-shot digital holography in which the complex amplitude distribution is obtained by spatial-carrier phase-shifting (SCPS) interferometry and the correction of the inherent phase-shift error occurred in this interferometry. The 0th order diffraction wave and the conjugate image are...
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Published in: | Optics letters 2012-01, Vol.37 (2), p.148-150 |
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Main Authors: | , , , , , , |
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cites | cdi_FETCH-LOGICAL-c390t-6843502118c9fe5b1c573b7375d5d8f5756424d1f9e46daf488519841e8cbe0c3 |
container_end_page | 150 |
container_issue | 2 |
container_start_page | 148 |
container_title | Optics letters |
container_volume | 37 |
creator | Tahara, Tatsuki Shimozato, Yuki Awatsuji, Yasuhiro Nishio, Kenzo Ura, Shogo Matoba, Osamu Kubota, Toshihiro |
description | We propose a single-shot digital holography in which the complex amplitude distribution is obtained by spatial-carrier phase-shifting (SCPS) interferometry and the correction of the inherent phase-shift error occurred in this interferometry. The 0th order diffraction wave and the conjugate image are removed by phase-shifting interferometry and Fourier transform technique, respectively. The inherent error is corrected in the spatial frequency domain. The proposed technique does not require an iteration process to remove the unwanted images and has an advantage in the field of view in comparison to a conventional SCPS technique. |
doi_str_mv | 10.1364/ol.37.000148 |
format | article |
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language | eng |
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source | Optica Publishing Group Journals |
subjects | Conjugates Diffraction Digital Error correction Fourier transforms Holography Interferometry |
title | Spatial-carrier phase-shifting digital holography utilizing spatial frequency analysis for the correction of the phase-shift error |
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