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Circular carrier squeezing interferometry: Suppressing phase shift error in simultaneous phase-shifting point-diffraction interferometer

delete2018-03-01
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PRE
AI
D
Donghui Zheng
L
Lei Chen *
J
Jinpeng Li
Q
Qinyuan Sun
W
Wenhua Zhu
J
J. M. Anderson
J
Jian Zhao
A
Axel Schülzgen
DOI:10.1016/j.optlaseng.2017.11.002delete
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Abstract

Abstract

En 中文
Circular carrier squeezing interferometry (CCSI) is proposed and applied to suppress phase shift error in simultaneous phase-shifting point-diffraction interferometer (SPSPDI). By introducing a defocus, four phase-shifting point-diffraction interferograms with circular carrier are acquired, and then converted into linear carrier interferograms by a coordinate transform. Rearranging the transformed interferograms into a spatial-temporal fringe (STF), so the error lobe will be separated from the phase lobe in the Fourier spectrum of the STF, and filtering the phase lobe to calculate the extended phase, when combined with the corresponding, inverse coordinate transform, exactly retrieves the initial phase. Both simulations and experiments validate the ability of CCSI to suppress the ripple error generated by the phase shift error. Compared with carrier squeezing interferometry (CSI), CCSI is effective on some occasions in which a linear carrier is difficult to introduce, and with the added benefit of eliminating retrace error. (C) 2017 Elsevier Ltd. All rights reserved.
Keywords:
Circular carrier
Interferometry
Point-diffraction
Phase-shifting

Journal

Optics and Lasers in Engineering cover
Optics and Lasers in Engineering
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3.7
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7.2K
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State University System of Florida cover
State University System of Florida
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U
University of Central Florida
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