Temporal analysis of grating formation in photopolymer using the nonlocal polymerization-driven diffusion model

The nonlocal polymerization-driven diffusion model (NPDD) has been shown to predict high spatial frequency cut-off in photopolymers and to accurately predict higher order grating components. We propose an extension to the NPDD model to account for the temporal response associated with polymer chain...

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Bibliographic Details
Published in:Optics express Vol. 13; no. 18; pp. 6990 - 7004
Main Authors: Kelly, John, Gleeson, Michael, Close, Ciara, O'Neill, Feidhlim, Sheridan, John, Gallego, Sergi, Neipp, Cristian
Format: Journal Article
Language:English
Published: United States 05-09-2005
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Summary:The nonlocal polymerization-driven diffusion model (NPDD) has been shown to predict high spatial frequency cut-off in photopolymers and to accurately predict higher order grating components. We propose an extension to the NPDD model to account for the temporal response associated with polymer chain growth. An exponential response function is proposed to describe transient effects during the polymerization process. The extended model is then solved using a finite element technique and the nature of grating evolution examined in the case when illumination is stopped prior to the saturation of the grating recording process. Based on independently determined refractive index measurements we determine the temporal evolution of the refractive index modulation and the resulting diffraction efficiency using rigorous coupled wave theory. Material parameters are then extracted based on fits to experimental data for nonlinear and both ideal and non-ideal kinetic models.
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ISSN:1094-4087
1094-4087
DOI:10.1364/opex.13.006990