Programmable apodizer to compensate chromatic aberration effects using a liquid crystal spatial light modulator

Programmable apodizers written on a liquid crystal spatial light modulator (LCSLM) offer the possibility of modifying the point spread function (PSF) of an optical system in monochromatic light with a high degree of flexibility. Extension to polychromatic light has to take into account the liquid cr...

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Autor principal: Márquez, A.
Otros Autores: Iemml, C., Campos, J., Escalera, J.C, Yzuel, M.J
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: Optical Society of American (OSA) 2005
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100 1 |a Márquez, A. 
245 1 0 |a Programmable apodizer to compensate chromatic aberration effects using a liquid crystal spatial light modulator 
260 |b Optical Society of American (OSA)  |c 2005 
270 1 0 |m Márquez, A.; Dept. de Física, Universidad de Alicante, Ap. 99, 03080 Alicante, Spain; email: amarquez@dfists.ua.es 
506 |2 openaire  |e Política editorial 
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504 |a Ledesma, S., Campos, J., Escalera, J.C., Yzuel, M.J., Simple expression for performance parameters of complex filters, with applications to supergaussian phase filters (2004) Opt. Lett., 29, pp. 932-934 
504 |a Campos, J., Escalera, J.C., Sheppard, C.J.R., Yzuel, M.J., Axially invariant pupil filters (2000) J. Mod. Opt., 47, pp. 57-68 
504 |a Yzuel, M.J., Escalera, J.C., Cansado, G., Campos, J., Illuminance and chromaticity of the image of optical systems with non-uniform transmission filters (1988) Proc. SPIE, 1013, pp. 120-127 
504 |a Escalera, J.C., Yzuel, M.J., Campos, J., Control of the polychromatic responses of an optical system through the use of annular color filters (1995) Appl. Opt., 34, pp. 1655-1663 
504 |a Smith, W.J., Modern Optical Engineering, pp. 402-412. , McGraw-Hill, 3rd Ed., 2000 
504 |a Yzuel, M.J., Calvo, F., A study of the possibility of image optimization by apodization filters with residual aberrations (1979) Optica Acta, 26, pp. 1397-1406 
504 |a Campos, J., Yzuel, M.J., Axial and extra-axial response in aberrated optical systems with apodizers. Optimization of the Strehl ratio (1989) J. Mod. Opt., 36, pp. 733-749 
504 |a Escalera, J.C., Yzuel, M.J., Campos, J., Influence of amplitude-only filters in optical systems with longitudinal chromatic aberration (1991) J. Mod. Opt, 38, pp. 1703-1720 
504 |a Chigrinov, V.G., (1999) Liquid Crystal Devices: Physics and Applications, , Artech House 
504 |a Campos, J., Márquez, A., Yzuel, M.J., Davis, J.A., Cottrell, D.M., Moreno, I., Fully complex synthetic discriminant functions written onto phase-only modulators (2000) Appl. Opt., 39, pp. 5965-5970 
504 |a Gualdrón, O., Davis, J.A., Nicolás, J., Campos, J., Yzuel, M.J., Complex encoding of rotation invariant filters onto a single phase-only SLM (2003) Appl. Opt., 42, pp. 1973-1980 
504 |a Laude, V., Twisted-nematic liquid-crystal pixelated active lens (1998) Opt. Commun., 153, pp. 134-152 
504 |a Yzuel, M.J., Campos, J., Márquez, A., Escalera, J.C., Davis, J.A., Iemmi, C., Ledesma, S., Inherent apodization of lenses encoded on liquid crystal spatial light modulators (2000) Appl. Opt., 39, pp. 6034-6039 
504 |a McOrst, J., Sharma, M.D., Sheppard, C.J.R., West, E., Matsuda, K., Hyperresolving phase-only filters with optically-addressable liquid crystal spatial ligth modulators (2003) Micron, 34, pp. 327-332 
504 |a Dou, R., Giles, M.K., Closed-loop adaptive optics system with a liquid crystal television as a phase retarder (1995) Opt. Lett, 20, pp. 1583-1585 
504 |a Coufal, H.J., Psaltis, D., Sincerbox, B.T., (2000) Holographic Data Storage, , Springer-Verlag, Berlin 
504 |a Davis, J.A., Escalera, J.C., Campos, J., Márquez, A., Yzuel, M.J., Iemmi, C., Programmable axial apodizing and hyperresolving amplitude filters using a liquid crystal spatial light modulator (1999) Opt. Lett., 24, pp. 628-630 
504 |a Márquez, A., Iemmi, C., Escalera, J.C., Campos, J., Ledesma, S., Davis, J.A., Yzuel, M.J., Amplitude apodizers encoded onto Fresnel lenses implemented on a phase-only spatial light modulator (2001) Appl. Opt., 40, pp. 2316-2322 
504 |a De Bougrenet De La Tocnaye, J.L., Dupont, L., Complex amplitude modulation by use of liquid-crystal spatial light modulators (1997) Appl. Opt., 36, pp. 1730-1741 
504 |a Márquez, A., Campos, J., Yzuel, M.J., Moreno, I., Davis, J.A., Iemmi, C., Moreno, A., Robert, A., Characterization of edge effects in twisted nematic liquid crystal displays (2000) Opt. Eng., 39, pp. 3301-3307 
504 |a Márquez, A., Iemmi, C., Moreno, I., Davis, J.A., Campos, J., Yzuel, M.J., Quantitative prediction of the modulation behavior of twisted nematic liquid crystal displays based on a simple physical model (2001) Opt. Eng., 40, pp. 2558-2564 
504 |a Nicolás, J., Campos, J., Yzuel, M.J., Phase and amplitude modulation of elliptic polarization states by non-absorbing anisotropic elements: Application to liquid crystal devices (2002) J. Opt. Soc. Am. A, 19, pp. 1013-1020 
504 |a Márquez, A., Cazorla, C., Yzuel, M.J., Campos, J., Characterization of the retardance of a wave plate to increase the robustness of amplitude-only and phase-only modulations of a liquid crystal display (2005) J. Mod. Opt., 52, pp. 633-650 
520 3 |a Programmable apodizers written on a liquid crystal spatial light modulator (LCSLM) offer the possibility of modifying the point spread function (PSF) of an optical system in monochromatic light with a high degree of flexibility. Extension to polychromatic light has to take into account the liquid crystal response dependence on the wavelength. Proper control of the chromatic properties of the LCSLM in combination with the design of the correct apodizer is necessary for this new range of applications. In this paper we report a successful application of a programmable amplitude apodizer illuminated with polychromatic light. We use an axial apodizing filter to compensate the longitudinal secondary axial color (LSAC) effects of a refractive optical system on the polychromatic PSF. The configuration of the LCSLM has been optimized to obtain a good amplitude transmission in polychromatic light. Agreement between experimental and simulated results shows the feasibility of our proposal. © 2005 Optical Society of America.  |l eng 
593 |a Dept. de Física, Universidad de Alicante, Ap. 99, 03080 Alicante, Spain 
593 |a Dept. de Física, Fac. de Ciencias Exactas y Naturales, Universidad de Buenos Aires, 1428 Buenos Aires, Argentina 
593 |a Departamento de Física, Univ. Autónoma de Barcelona, 08193 Bellaterra, Spain 
650 1 7 |2 spines  |a COLOR 
690 1 0 |a FUNCTIONS 
690 1 0 |a IRRADIATION 
690 1 0 |a LIGHT MODULATORS 
690 1 0 |a LIQUID CRYSTALS 
690 1 0 |a MATHEMATICAL MODELS 
690 1 0 |a OPTICAL SYSTEMS 
690 1 0 |a OPTIMIZATION 
690 1 0 |a CHROMATIC ABERRATION 
690 1 0 |a LONGITUDINAL SECONDARY AXIAL COLORS (LSAC) 
690 1 0 |a POINT SPREAD FUNCTIONS (PSF) 
690 1 0 |a POLYCHROMATIC LIGHTS 
690 1 0 |a PROGRAMMABLE APODIZER 
690 1 0 |a ABERRATIONS 
700 1 |a Iemml, C. 
700 1 |a Campos, J. 
700 1 |a Escalera, J.C. 
700 1 |a Yzuel, M.J. 
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