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Diffraction and geometrical optical transfer functions: calculation time comparison

In a recent paper, we compared the diffraction and geometrical optical transfer functions (OTFs) of an optical imaging system, and showed that the GOTF approximates the DOTF within 10% when a primary aberration is about two waves or larger [Appl. Opt., 55, 3241-3250 (2016)]. In this paper, we determine and compare the times to calculate the DOTF by autocorrelation or digital autocorrelation of the pupil function, and by a Fourier transform (FT) of the point-spread function (PSF); and the GOTF by a FT of the geometrical PSF and its approximation, the spot diagram. Our starting point for calculating the DOTF is the wave aberrations of the system in its pupil plane, and the ray aberrations in the image plane for the GOTF. The numerical results for primary aberrations and a typical imaging system show that the direct integrations are slow, but the calculation of the DOTF by a FT of the PSF is generally faster than the GOTF calculation by a FT of the spot diagram.

Identiferoai:union.ndltd.org:arizona.edu/oai:arizona.openrepository.com:10150/626488
Date23 August 2017
CreatorsDíaz, José Antonio, Mahajan, Virendra N.
ContributorsUniv Arizona, Coll Opt Sci
PublisherSPIE-INT SOC OPTICAL ENGINEERING
Source SetsUniversity of Arizona
LanguageEnglish
Detected LanguageEnglish
TypeArticle
Rights© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE).
Relationhttps://www.spiedigitallibrary.org/conference-proceedings-of-spie/10375/2275377/Diffraction-and-geometrical-optical-transfer-functions-calculation-time-comparison/10.1117/12.2275377.full

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