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Development of 3D photonic crystals using sol-gel process for high power laser applications

机译:使用溶胶-凝胶工艺开发3D光子晶体以用于高功率激光应用

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Three-dimensional photonic crystals (PCs) are periodic materials with a modulated refractive index on a length scale close to the light wavelength. This optical property allows the preparation of specific optical components like highly reflective mirrors. Moreover, these structured materials are known to have a high laser-induced damage threshold (LIDT) in the sub-nanosecond range compared to multi-layered dielectric mirrors. This property is obtained because only one high LIDT material (silica) is used. The second material used in the layer stack is replaced by air. In this work, we present the development of 3D PCs with narrow-sized colloidal silica particles, prepared by sol-gel process and deposited with Langmuir-Blodgett technique. Different syntheses routes have been investigated and compared regarding the optical properties of the PCs. Finally a numerical model based on an ideal opal network including defect influence is used to explain these experimental results.
机译:三维光子晶体(PC)是周期性材料,其长度方向上的调制折射率接近光波长。这种光学性质允许制备特定的光学组件,例如高反射镜。此外,与多层介电镜相比,已知这些结构材料在亚纳秒范围内具有较高的激光诱导损伤阈值(LIDT)。由于仅使用一种高LIDT材料(二氧化硅)而获得此特性。叠层中使用的第二种材料被空气代替。在这项工作中,我们介绍了通过溶胶-凝胶工艺制备并用Langmuir-Blodgett技术沉积的具有窄尺寸胶体二氧化硅颗粒的3D PC的开发。关于PC的光学特性,已经研究并比较了不同的合成路线。最后,基于包含缺陷影响的理想蛋白石网络的数值模型用于解释这些实验结果。

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