Volume holographic mixed-gratings model in photopolymer doped with gold nanoparticles

Wu Shenghan;Cao Liangcai;Hao Jinping;Zhu Chen;Jin Guofan

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    Published By: Journal of Applied Optics

    CN 61-1171/O4

Journal of Applied Optics ›› 2018, Vol. 39 ›› Issue (5) : 707-713. DOI: 10.5768/JAO201839.0505002

Volume holographic mixed-gratings model in photopolymer doped with gold nanoparticles

  • Wu Shenghan1, Cao Liangcai1, Hao Jinping2, Zhu Chen2, Jin Guofan1
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Abstract

During holographic recording, mixed gratings in photopolymer doped with gold nanoparticles are formed by the primary refractive index grating caused by periodic spatial distribution of photoproduct and the secondary absorption grating induced by spatial distributed nanoparticles because of local surface plasmon resonance. A mixed-grating model based on Kogelnik's coupled wave theory was investigated to analyze the volume holographic characteristics. Results show that both refractive index grating and absorption grating contribute to the improvement of diffraction efficiency; the mixed gratings also exert positive influence on angular selectivity.

Key words

grating / information optics / diffraction efficiency / volume holographic / gold nanoparticles / photopolymer

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Wu Shenghan, Cao Liangcai, Hao Jinping, Zhu Chen, Jin Guofan. Volume holographic mixed-gratings model in photopolymer doped with gold nanoparticles. Journal of Applied Optics. 2018, 39(5): 707-713 https://doi.org/10.5768/JAO201839.0505002

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