Publication | Closed Access
Gram–Schmidt orthonormalization of Zernike polynomials for general aperture shapes
64
Citations
6
References
1994
Year
Geometric ModelingGram–schmidt OrthonormalizationAdaptive OpticAberration FunctionsAnnular Sector AperturesEngineeringOphthalmologyNatural SciencesOptic DesignGeometrical OpticActive OpticsComputational ImagingFreeform OpticComputational ElectromagneticsGeometrical AberrationComputational GeometryOptical System AnalysisBasis Set
We present analytical derivations of aberration functions for annular sector apertures. We show that the Zernike functions for circular apertures can be generalized for any aperture shape. Interferogram reduction when Zernike functions were used as a basis set was performed on annular sectors. We have created a computer program to generate orthogonal aberration functions. Completely general aperture shapes and user-selected basis sets may be treated with a digital Gram-Schmidt orthonormalization approach.
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