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Spectral Behavior of Nano-sized and Azimuthally Symmetric Coated Long Period Gratings

机译:纳米尺寸和方位角对称的镀膜长周期光栅的光谱行为

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In this work, the experimental analysis of the sensitivity characteristics to the surrounding refractive index in nanoscale coated long period gratings (LPGs) is presented. Polymeric coatings of refractive index higher than the cladding one have been considered with thickness values ranging in hundreds of nanometers. The presence of the high refractive index coating induces the cladding to overlay mode transition depending on the overlay features (thickness and index) and the surrounding refractive index. The immediate consequence is a drastic enhancement in the sensitivity to surrounding refractive index due to a large shift of all the attenuation bands in the refractive index range where the modal transition occurs. As matter of fact the sensitivity characteristics changes from the sub-linear monotone behaviour to a resonant like shape. Here, a complete experimental analysis combined with an analytical fitting has been investigated to outline the new SRI sensitivity profile and its dependence on the overlay thickness and order mode.
机译:在这项工作中,对纳米涂层的长周期光栅(LPGs)对周围折射率的敏感度特性进行了实验分析。已经考虑到折射率高于包层的聚合物涂层,其厚度值在数百纳米的范围内。高折射率涂层的存在取决于包层特征(厚度和折射率)和周围的折射率,导致包层向包层模式过渡。直接的结果是,由于发生模态转变的折射率范围内所有衰减带的较大偏移,因此对周围折射率的灵敏度急剧提高。实际上,灵敏度特性从亚线性单调行为变为共振的形状。在这里,已经研究了完整的实验分析和分析拟合,以概述新的SRI灵敏度曲线及其对覆盖层厚度和阶模的依赖性。

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