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Fabrication and optical assessment of sol-gel-derived photonic bandgap dielectric structures

机译:溶胶凝胶衍生的光子带隙介电结构的制备和光学评估

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We present the details of the Sol-gel processing used to synthesize silica spheres, with particular attention to the conditions that permit to tailor their dimension. We have elaborated a protocol in order to obtain silica micro spheres with low polydispersivity and we have demonstrated that large well-ordered crystals of synthetic opal, that exhibit a photonic stopband, can be produced in few days by vertical deposition and evaporation-assisted sedimentation deposition methods. Scanning electron microscope was employed to characterize the samples reflectance and transmission measurements were used to put in evidence the high quality of the realized opals. Starting from the silica spheres, core-shell-like Er~(3+)-activated silica spheres were also prepared, where the core is the silica sphere and the shell is an Er_2O_3-SiO_2 coating. Morphologic, structural and spectroscopic properties were investigated by scanning electron microscope and luminescence spectroscopy. The emission of ~4I_(13/2) → ~4I_(15/2) of Er~(3+) ion transition with a 27 nm bandwidth was observed upon excitation at 514.5 nm. The ~4I_(13/2) level decay curves presented a single-exponential profile, with a lifetime of 12.8 ms.
机译:我们介绍了用于合成二氧化硅球的溶胶-凝胶工艺的细节,特别注意允许定制其尺寸的条件。我们已经拟定了一个方案,以获得具有低多分散性的二氧化硅微球,并且我们已经证明,可以通过垂直沉积和蒸发辅助沉降沉积在几天内生产出具有光子阻带的大有序的合成蛋白石晶体。方法。使用扫描电子显微镜表征样品的反射率,并使用透射率测量来证明所实现的蛋白石的高质量。从二氧化硅球开始,还制备了核壳状的Er〜(3+)活化的二氧化硅球,其中核为二氧化硅球,壳为Er_2O_3-SiO_2涂层。通过扫描电子显微镜和发光光谱研究了形态,结构和光谱性质。在514.5 nm激发时,观察到Er〜(3+)离子跃迁的〜4I_(13/2)→〜4I_(15/2)发射出27 nm带宽。 〜4I_(13/2)级衰减曲线呈现出单指数曲线,寿命为12.8 ms。

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