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Enhanced absorption and emission of Y_3Al_5O_12:Ce^3+ thin layers prepared by epoxide-catalyzed sol-gel method

机译:环氧催化溶胶-凝胶法制备的Y_3Al_5O_12:Ce ^ 3+薄膜的吸收和发射增强

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摘要

We have developed a method for fabricating thin layers of Ce[3+] doped yttrium aluminium garnet, Y_3Al_5O_[12] (YAG:Ce) based on a sol-gel approach with propylene oxide as a gelation initiator. A single spin-coating process followed by a sequence of heat treatments allows the fabrication of polycrystalline YAG:Ce thin layers with a thickness of a few hundreds of nanometers. Surface morphology, crystallite size, and quantum efficiency are examined as a function of heat treatment temperature. The optical quality of the layer is further investigated by measuring the enhanced absorption of light coupled into the layer. We fabricate a three-layered slab waveguide system consisting of a fused silica glass substrate, a YAG:Ce layer and a SiO_2 upper layer, and excite the system by illumination through a prism. The incident light couples to the fundamental waveguide mode in the YAG:Ce layer where it is eventually absorbed, resulting in an enhancement of absorption by a factor of 30. In correspondence, we observe a similar increase in emission intensity of photoluminescence caused by the enhanced absorption.
机译:我们已经开发了一种基于溶胶-凝胶法,以环氧丙烷为胶凝引发剂的Ce [3+]掺杂钇铝石榴石Y_3Al_5O_ [12](YAG:Ce)薄层的制造方法。一次旋涂工艺,然后进行一系列热处理,可以制造厚度为几百纳米的多晶YAG:Ce薄层。检查表面形态,微晶尺寸和量子效率与热处理温度的关系。通过测量耦合到该层中的光的增强吸收,进一步研究该层的光学质量。我们制造了由熔融石英玻璃基板,YAG:Ce层和SiO_2上层组成的三层平板波导系统,并通过棱镜照射来激发该系统。入射光在YAG:Ce层中耦合到基本波导模式,最终被吸收,从而使吸收增强了30倍。与此相对应,我们观察到由于增强而引起的光致发光发射强度的相似增加。吸收。

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