Combinatorial approach toward optimization of the light emission intensity of AlO x N y :Yb 3+ thin films.
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OSA - The Optical Society
Acceso al texto completo solo para la Comunidad PUCP
Abstract
To obtain an adequate luminescent emission, a significant effort must be made to find a suitable host material. An interesting and highly efficient method is a combinatorial approach, which allows high velocity screening of a wider range of properties. In the present work, a compositional gradient-based, thin-film library of a-AlOxNy:Yb3+ has been prepared by radio frequency co-sputtering from two targets. The ytterbium concentration range spreads from 0.9 to 4.2 at. % and the oxygen to nitrogen ratio from 0.6 to 3.6. Using different annealing temperatures, the activation energy of the rare earth ions and activation mechanisms can be evaluated. Finally, optimal elemental compositions in the investigated range are proposed.
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Ytterbium, Materials science, Thin film, Ion, Luminescence, Annealing (glass), Refractive index, Range (aeronautics), Sputtering, Analytical Chemistry (journal), Optics, Doping, Optoelectronics, Physics, Nanotechnology, Chemistry
