Publicación

Suppressing ripple distortions and spurious pistons in phase-shifting interferometry

Ivan Choque · Moisés Padilla · Manuel Servı́n · Miguel Asmad · Sotero Ordoñes
2020 Journal of the Optical Society of America A: Optics and Image Science, and Vision DOI: 10.1364/josaa.385986

Resumen

In this paper, we present new phase-shifting algorithms (PSAs) that suppress the ripple distortions and spurious pistons in phase-shifting interferometry. These phase errors arise when non-uniform phase-shifting interferograms are processed with PSAs that assume uniform phase shifts. By modeling the non-uniform phase shifts as a polynomial of the unperturbed phase-shift value ω 0 , we show that the conditions for eliminating the ripple distortion and the spurious piston are associated with the m th derivative of the PSA’s frequency transfer function (FTF). Thus, we propose an approach to design robust algorithms based on the FTF formalism and we present four ready-to-apply PSAs formulas. Finally, our conclusions are supported by computer simulations.

Autores y colaboradores

Authors

Ivan Choque
Moisés Padilla
Manuel Servı́n
Miguel Asmad
Sotero Ordoñes

Palabras clave

ERROR-COMPENSATING ALGORITHMS COMPONENT ANALYSIS OPTICAL-THICKNESS SURFACE SHAPE DERIVATION DESIGN