Descripción
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Wave aberrations in the human eye are usually known with respect to the ideal spherical wavefront in the exit pupil. Using Kirchhoff ¿s diffraction theory, we have derived a diffraction integral to compute the optical field on the retina from the wave aberration data. We have proposed a numerical algorithm based on the Stamnes¿Spjelkavik¿Pedersen (SSP) method to solve that integral. We have shown which approximations are admissible to reduce the complexity of the diffraction integral. In addition, we have compared our results with those of the conventional procedure used to compute intensities on the retina. We have found significant differences between our results and the conventional ones. | |
Internacional
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Si |
Nombre congreso
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Frontiers in optics |
Tipo de participación
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960 |
Lugar del congreso
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Rochester, USA |
Revisores
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Si |
ISBN o ISSN
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1084-7529 |
DOI
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10.1364/JOSAA.25.002280 |
Fecha inicio congreso
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19/10/2008 |
Fecha fin congreso
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23/10/2008 |
Desde la página
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2280 |
Hasta la página
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2285 |
Título de las actas
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Journal of the Optical Society of America. A, Optical physics 2008 vol.25 iss:9 |