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Analysis of the Characteristics of PVA-Coated LPG-Based Sensors to Coating Thickness and Changes in the External Refractive Index

机译:基于PVA涂层的LPG传感器的涂层厚度和外部折射率变化的特性分析

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摘要

Recent research has shown that the transmission spectrum of a long period grating (LPG) written into an optical fiber is sensitive to the thickness and the refractive index (RI) of a thin layer deposited on it, a concept which forms the basis of a number of optical fiber sensors. The research reported herein is focused, in particular, on sensors of this type to create a design with an optimized thickness of the deposited layers of polyvinyl alcohol (PVA) on LPGs forming the basis of a highly sensitive probe. In creating such sensors, the dip-coating technique is used to minimize deleterious effects in the attenuation bands resulting from the inhomogeneity of the coated surface. In this paper, LPGs with different coating thicknesses are uniformly coated with thin layers of PVA and submerged in oils of known RI over the range from 1.30 to 1.70, to create effective RI probes. It is observed that when the coating thickness reaches a particular value that enables a substantial redistribution of the optical power within the overlay, a maximum sensitivity of the sensor can be achieved, even when the overlay has a RI higher than that of the cladding. The experimental results obtained through the characterization of the devices developed are shown to be in good agreement with the results of a theoretical model.
机译:最近的研究表明,写入光纤的长周期光栅(LPG)的透射光谱对沉积在其上的薄层的厚度和折射率(RI)敏感,这一概念构成了许多数字的基础。光纤传感器。本文报道的研究尤其集中在这种类型的传感器上,以形成具有形成高度灵敏探针基础的LPG上的聚乙烯醇(PVA)沉积层最优化厚度的设计。在创建这样的传感器时,浸涂技术用于最小化由涂覆表面的不均匀性导致的衰减带中的有害影响。在本文中,将具有不同涂层厚度的液化石油气均匀地涂上一层PVA薄层,然后浸入已知RI的1.30至1.70范围的油中,以创建有效的RI探针。可以观察到,当涂层厚度达到能够使覆盖层内的光功率实质性重新分布的特定值时,即使覆盖层的RI比覆盖层的RI高,也可以实现传感器的最大灵敏度。通过开发的设备的表征获得的实验结果显示与理论模型的结果非常吻合。

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