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I.B.M., said that output from the single-molecule devices -- which are cylinders of carbon so thin that 50,000 of them would equal the thickness of a human hair -- suggest that such nanotubes could become important materials in optical communications, sensing and other light-based applications.
Al2O3/ZrO2 multilayer films have been used as bond layers of thermal barrier Coatings, dielectric films, and highly transparent materials in optical and protective coatings[2, 3].
We investigate the optical properties of these complexes, so that this information would help researchers toward applying these materials in optical communication and optical devices.
They can be used as active materials in optical and optoelectronic devices such as optical switches, sensors, and lasers [4 6].
The plastic materials in optical disk circuit need to be highly transparent, resistant to heat, low impurities, and must have a low double refractive index and low fluidity.
The erbium complexes exhibited good solubility in conventional solvents and excellent near-infrared luminescence properties, indicating their promising potential as gain medium materials in optical amplification devices.
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Realizing the high light absorptance and broad response spectrum of black silicon is extremely important not only for the fundamental studies of novel performance of silicon material in optical engineering but also for its likeable applications in photoelectronic detectors.
In the present work, we investigate amorphous Ta2O5 films prepared using different magnetron sputtering techniques at a constant average power but under various power delivery conditions in the context of their application as high index material in optical coatings.
ZnS is an important II VI group semiconductor compound with a direct band gap of 3.7 eV that exhibits wide optical transparency from the visible light (0.4 μm) to the deep infrared region (12 μm), which makes ZnS as one of the most common materials used in optical and optoelectronic fields [10 12].
The novel-type nanostructured ARCs are promising materials in both optical and photovoltaic applications.
Metal nanoparticles resembles with those of bulk materials in their optical properties even in very small dimensions.
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