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Spherical resonators coated by glass and glass-ceramic films

机译:由玻璃和玻璃膜涂覆的球形谐振器

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Coating of spherical microresonators is a very promising technique for optimizing their optical properties. Optical coatings are constituted by glasses, polymer, and glass ceramics, passive or activated by luminescent species, Glass ceramic activated by rare earth ions are nanocomposite systems that exhibit specific morphologic, structural and spectroscopic properties allowing to develop interesting new physical concepts, for instance the mechanism related to the transparency, as well as novel photonic devices based on the enhancement of the luminescence. At the state of art the fabrication techniques based on bottom-up and top-down approaches appear to be viable although a specific effort is required to achieve the necessary reliability and reproducibility of the preparation protocols. In particular, the dependence of the final product on the specific parent glass and on the employed synthesis still remain an important task of the research in material science. Looking to application, the enhanced spectroscopic properties typical of glass ceramic in respect to those of the amorphous structures constitute an important point for the development of integrated optics devices, including coating of spherical microresonators. Here we present a review regarding spherical microresonators coated by glass and glass-ceramic film activated by Er~(3+) ions. Er~(3+) ions appear to be embedded in a crystalline or amorphous environment and the lifetime dynamic is influenced by the geometry and by the morphology of the system. Photoluminescence results and morphologic properties are discussed for both amorphous and glass ceramic films.
机译:球形微生物涂层是一种用于优化光学性质的非常有希望的技术。光学涂层由玻璃,聚合物和玻璃陶瓷构成,通过稀土离子激活的玻璃陶瓷被玻璃陶瓷是纳米复合体系,其表现出特异性形态,结构和光谱性能,允许开发有趣的新物理概念,例如与透明度相关的机制,以及基于发光的增强的新型光子器件。在最先进状态下,基于自下而上和自上而下方法的制造技术似乎是可行的,尽管需要具体的努力来实现制备方案的必要可靠性和再现性。特别是,最终产品对特定母体玻璃和所用综合的依赖性仍然是材料科学研究的重要任务。寻求应用,关于非晶结构的玻璃陶瓷典型的增强的光谱性质构成了用于开发集成光学器件的重要点,包括球形微生物涂层。在这里,我们提出了一种关于由ER〜(3+)离子的玻璃和玻璃膜涂覆的球形微生物的综述。 ER〜(3+)离子似乎嵌入结晶或非晶环境中,寿命动态受几何形状的影响和系统的形态。对于无定形和玻璃陶瓷薄膜讨论了光致发光结果和形态学性质。

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