Reversible holography and optical phase conjugation for image formation/correction using highly efficient organic photorefractive polymers
Autor: | Víctor-Manuel Herrera-Ambriz, Oracio Barbosa-García, Norberto Farfán, José-Luis Maldonado, Mario o Rodríguez, Gabriel Ramos-Ortiz, Marco-Antonio Meneses-Nava, Rosa Santillan |
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Rok vydání: | 2015 |
Předmět: |
Diffraction
Image formation Materials science business.industry time reconstructions Doping Ingeniería General Engineering Holography Photorefractive effect Chromophore law.invention Four-wave mixing Optical phase conjugation Optics Photorefractive polymers law Real-time reconstructions Adaptive optics business Real |
Zdroj: | Universidad Nacional Autónoma de México UNAM Redalyc-UNAM Journal of Applied Research and Technology (México) Num.6 Vol.13 |
ISSN: | 1665-6423 |
DOI: | 10.1016/j.jart.2015.10.007 |
Popis: | In this work, we report the reversible reconstruction of holographic and distorted transmission images through the four wave mixing (FWM) technique and optical phase conjugation (OPC), an alternative method to adaptive optics, by using highly efficient Photorefractive (PR) polymers fabricated in our laboratories. These PR polymers are based on our synthesized nonlinear chromophore 4-[4-(diethylamino)-2 hydroxybenzylideneamino] benzonitrile (Dc). For the PR devices, diffraction efficiencies as high as 90% at 25 wt.% doping level of Dc at an external applied electric field (Eext) around 56 V/m are achieved. The reconstruction implementation is simple, of low cost, all-optical and it is capable of recovering 90% of the original images. The real-time holographic experiments were performed at Eext of just 27 V/m, which is one of the lowest reported values. Reversible holographic imaging is showed with a rise-time around 0.35 s. All Rights Reserved © 2015 Universidad Nacional Autonoma de Mexico, Centro de Ciencias Aplicadas y Desarrollo Tecnologico. This is an open access item distributed under the Creative Commons CC License BY-NC-ND 4.0. |
Databáze: | OpenAIRE |
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