Diffractive optics with high Bragg selectivity: volume holographic optical elements in Bayfol® HX photopolymer film
暂无分享,去创建一个
Friedrich-Karl Bruder | Thomas Rölle | Enrico Orselli | Christian Rewitz | Thomas Fäcke | Rainer Hagen | Dennis Hönel | Günther Walze | T. Fäcke | F. Bruder | Günther Walze | E. Orselli | R. Hagen | T. Rölle | C. Rewitz | Dennis Hönel
[1] Juris Upatnieks,et al. Efficiency and Image Contrast of Dielectric Holograms , 1970 .
[2] I. Baldry,et al. Volume Phase Holographic Gratings: Polarization Properties and Diffraction Efficiency , 2004, astro-ph/0402402.
[3] Friedrich-Karl Bruder,et al. Holographic recordings with high beam ratios on improved Bayfol® HX photopolymer , 2013, Europe Optics + Optoelectronics.
[4] Sheridan,et al. Nonlocal-response diffusion model of holographic recording in photopolymer , 2000, Journal of the Optical Society of America. A, Optics, image science, and vision.
[5] Michael R. Gleeson,et al. REVIEW ARTICLE: A review of the modelling of free-radical photopolymerization in the formation of holographic gratings , 2009 .
[6] P. Meyrueis,et al. Applied Digital Optics , 2009 .
[7] M. Gleeson,et al. Optical response of photopolymer materials for holographic data storage applications. , 2007, Journal of nanoscience and nanotechnology.
[8] Bernard C. Kress,et al. Applied Digital Optics: From Micro-optics to Nanophotonics , 2009 .
[9] Pantazis Mouroulis,et al. Diffusion Model of Hologram Formation in Dry Photopolymer Materials , 1994 .
[10] Friedrich-Karl Bruder,et al. Reaction-diffusion model applied to high resolution Bayfol HX photopolymer , 2010, OPTO.
[11] H. Kogelnik. Coupled wave theory for thick hologram gratings , 1969 .
[12] D Psaltis,et al. Characterization of phenanthrenequinone-doped poly(methyl methacrylate) for holographic memory. , 1998, Optics letters.
[13] D. Lougnot,et al. Photopolymers for holographic recording. V. Self-processing systems with near infrared sensitivity , 1994 .