Holographic behavior of a photopolymer at high thicknesses and high monomer concentrations: mechanism of photopolymerization

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Títol: Holographic behavior of a photopolymer at high thicknesses and high monomer concentrations: mechanism of photopolymerization
Autors: García Llopis, Celia | Fimia Gil, Antonio | Pascual, Inmaculada
Grups d'investigació o GITE: Holografía y Procesado Óptico
Centre, Departament o Servei: Universidad de Alicante. Departamento de Óptica, Farmacología y Anatomía | Universidad Miguel Hernández. Departamento de Ciencia de Materiales, Óptica y Tecnología Electrónica
Paraules clau: Holography | Holographic recording materials | Photopolymers
Àrees de coneixement: Física Aplicada | Óptica
Data de creació: 28-de gener-2000
Data de publicació: de febrer-2001
Editor: Springer Berlin / Heidelberg
Citació bibliogràfica: GARCÍA LLOPIS, Celia; FIMIA GIL, Antonio; PASCUAL VILLALOBOS, Inmaculada. “Holographic behavior of a photopolymer at high thicknesses and high monomer concentrations: mechanism of photopolymerization”. Applied Physics B: Lasers and Optics. Vol. 72, No. 3 (Febr. 2001). ISSN 0946-2171, pp. 311-316
Resum: One of the main problems involved in the development of holography is that of the recording material used. In this study the behavior of a photopolymer is analyzed when thicknesses greater than 100 μm are used. The photopolymer is made up of acrylamide as monomer, triethanolamine as radical generator, yellowish eosin as sensitizer and polyvinyl alcohol as binder. The main problem is that an increase in thickness produces more scattering and consequently a decrease in the diffraction efficiency. In this study we analyzed the influence of the concentration of monomer on scattering and found that an increase in the concentration reduces scattering. The behavior of the material varies as the concentration of acrylamide is increased. Two polymerization mechanisms compete and so the behavior of the photopolymer is not linear, the reaction is slower and the expected maximum efficiency is not reached. It has been demonstrated experimentally that when the recording intensity is reduced the photopolymer behaves in a linear way.
Patrocinadors: This work was financed by the CICYT, Spain, under project MAT97-0705-C02-02.
URI: http://hdl.handle.net/10045/9313
ISSN: 0946-2171 (Print) | 1432-0649 (Online)
DOI: 10.1007/s003400000469
Idioma: eng
Tipus: info:eu-repo/semantics/article
Drets: The original publication is available at www.springerlink.com
Revisió científica: si
Versió de l'editor: http://dx.doi.org/10.1007/s003400000469
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