Comparative study of computational methods for wavefront fitting

Applied Computational Optics Group, Friedrich Schiller University Jena; 2 Wyrowski Photonics UG

badar.irfan@gmail.com

Abstract

Zernike polynomials are one of the major tools in optical design applications ranging from modeling optical surfaces to representing wavefronts. We present a comparative analysis of cubic B-spline model as an alternative to classical Zernike polynomials representation, and compare the efficacy of each representation over a set of different sampling grids, when applied to complex wavefront fitting. The results show that effectiveness of fit using cubic B-spline is better as compared to traditional Zernike polynomials. Furthermore we show that sampling grid type limiting the efficacy of computation Zernike coefficients as compared to B-spline control points. We also implement cubic B-spline fitting for efficient tracing of light fields by geometrical optics.

Keywords

Surfaces Optical Design
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@inproceedings{dgao116-p21, title = {Comparative study of computational methods for wavefront fitting}, author = {M. Badar, F. Wyrowski, C. Hellmann}, booktitle = {DGaO-Proceedings, 116. Jahrestagung}, year = {2015}, publisher = {Deutsche Gesellschaft für angewandte Optik e.V.}, issn = {1614-8436}, note = {Poster P21} }
116. Jahrestagung der DGaO · Brno · 2015