Chromatic aberration control with liquid crystal spatial phase modulators.
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Pablo Artal | Pedro M Prieto | P. Artal | José L. Martínez | P. Prieto | Jose L Martinez | Enrique J Fernandez | E. Fernández
[1] Claudio Iemmi,et al. Modulation light efficiency of diffractive lenses displayed in a restricted phase-mostly modulation display. , 2004, Applied optics.
[2] G E Sommargren,et al. Harmonic diffractive lenses. , 1995, Applied optics.
[3] D M Cottrell,et al. Multiple imaging phase-encoded optical elements written as programmable spatial light modulators. , 1990, Applied optics.
[4] Jorge Albero,et al. Second order diffractive optical elements in a spatial light modulator with large phase dynamic range , 2013 .
[5] Rajesh Menon,et al. Chromatic-aberration-corrected diffractive lenses for ultra-broadband focusing , 2016, Scientific Reports.
[6] Pablo Artal,et al. Binocular adaptive optics visual simulator. , 2009, Optics letters.
[7] Pablo Artal,et al. Wave-aberration control with a liquid crystal on silicon (LCOS) spatial phase modulator. , 2009, Optics express.
[8] Pablo Artal,et al. Interferometric method for phase calibration in liquid crystal spatial light modulators using a self-generated diffraction-grating. , 2016, Optics express.
[9] J. Pérez,et al. Three dimensional analysis of chromatic aberration in diffractive elements with extended depth of focus. , 2007, Optics express.
[10] I. Moreno,et al. Liquid crystal spatial light modulator with very large phase modulation operating in high harmonic orders. , 2013, Optics letters.
[11] Pablo Artal,et al. Adaptive optics with a programmable phase modulator: applications in the human eye. , 2004, Optics express.
[12] George Smith,et al. Chromatic dispersions of the ocular media of human eyes. , 2005, Journal of the Optical Society of America. A, Optics, image science, and vision.