Search results for "Holographic data storage"

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Thermal, glass-forming, nonlinear optical and holographic properties of "push-pull" type azochromophores with triphenyl moieties containing isophoren…

2013

Molecular organic compounds with electron donating fragment bounded through π-conjugated system with electron acceptor fragment, as well as with incorporated triphenyl groups in their molecules show potential for creating cheap and simple solution processable materials with nonlinear optical properties. Additional insertion of azobenzene fragment in their structures makes them also possible to form holographic volume and surface relief gratings (SRG) after exposure to laser radiation, which could be useful for holographic data storage. For these purposes polymers are generally used. However, their application is complicated and challenging task as in every attempt to obtain the same polymer…

chemistry.chemical_classificationDiffractionMaterials sciencebusiness.industryPolymerHolographic data storageDiffraction efficiencyAmorphous solidchemistry.chemical_compoundchemistryAzobenzeneOptoelectronicsPhysical chemistryThermal stabilitybusinessGlass transitionSPIE Proceedings
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Rigid polymer materials with hologram enhancement by molecular diffusion

2003

The principle of diffusional enhancement has been embodied in the rigid glassy polymer with phenanthrenequinone able to photochemically attach to surrounding macromolecules, thus forming a permanent grating. Owing to material stiffness, it does not suffer from shrinkage and can be made very thick; serving a basis for very stable spectrally selective elements. Replacement of commonly used acrylic glass by polycarbonate ensures further significant improvement of performance and stability of 3D holographic optical elements and memories.

chemistry.chemical_classificationMolecular diffusionMaterials sciencebusiness.industryHolographyPolymerGratingHolographic data storagelaw.inventionPhotopolymerOpticschemistrylawvisual_artvisual_art.visual_art_mediumPolycarbonateComposite materialbusinessShrinkageSPIE Proceedings
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