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Partially coherent imaging and spatial coherence wavelets

A description of spatially partially coherent imaging based on the propagation of second order spatial coherence wavelets and marginal power spectra (Wigner distribution functions) is presented. In this dynamics, the spatial coherence wavelets will be affected by the system through its elementary tr...

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Autor principal: Castaneda, R
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/747038
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author Castaneda, R
author_facet Castaneda, R
author_sort Castaneda, R
collection CERN
description A description of spatially partially coherent imaging based on the propagation of second order spatial coherence wavelets and marginal power spectra (Wigner distribution functions) is presented. In this dynamics, the spatial coherence wavelets will be affected by the system through its elementary transfer function. The consistency of the model with the both extreme cases of full coherent and incoherent imaging was proved. In the last case we obtained the classical concept of optical transfer function as a simple integral of the elementary transfer function. Furthermore, the elementary incoherent response function was introduced as the Fourier transform of the elementary transfer function. It describes the propagation of spatial coherence wavelets form each object point to each image point through a specific point on the pupil planes. The point spread function of the system was obtained by a simple integral of the elementary incoherent response function.
id cern-747038
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-7470382019-09-30T06:29:59Zhttp://cds.cern.ch/record/747038engCastaneda, RPartially coherent imaging and spatial coherence waveletsGeneral Theoretical PhysicsA description of spatially partially coherent imaging based on the propagation of second order spatial coherence wavelets and marginal power spectra (Wigner distribution functions) is presented. In this dynamics, the spatial coherence wavelets will be affected by the system through its elementary transfer function. The consistency of the model with the both extreme cases of full coherent and incoherent imaging was proved. In the last case we obtained the classical concept of optical transfer function as a simple integral of the elementary transfer function. Furthermore, the elementary incoherent response function was introduced as the Fourier transform of the elementary transfer function. It describes the propagation of spatial coherence wavelets form each object point to each image point through a specific point on the pupil planes. The point spread function of the system was obtained by a simple integral of the elementary incoherent response function.IC-2003-14oai:cds.cern.ch:7470382003
spellingShingle General Theoretical Physics
Castaneda, R
Partially coherent imaging and spatial coherence wavelets
title Partially coherent imaging and spatial coherence wavelets
title_full Partially coherent imaging and spatial coherence wavelets
title_fullStr Partially coherent imaging and spatial coherence wavelets
title_full_unstemmed Partially coherent imaging and spatial coherence wavelets
title_short Partially coherent imaging and spatial coherence wavelets
title_sort partially coherent imaging and spatial coherence wavelets
topic General Theoretical Physics
url http://cds.cern.ch/record/747038
work_keys_str_mv AT castanedar partiallycoherentimagingandspatialcoherencewavelets