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Performance analysis of polymer optical fibre based Fabry-Perot sensor formed by two uniform Bragg gratings

机译:由两个均匀布拉格光栅构成的基于聚合物光纤的Fabry-Perot传感器的性能分析

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摘要

The stress sensitivity of polymer optical fibre (POF) based Fabry-Perot sensors formed by two uniform Bragg gratings with finite dimensions is investigated. POF has received high interest in recent years due to its different material properties compared to its silica counterpart. Biocompatibility, a higher failure strain and the highly elastic nature of POF are some of the main advantages. The much lower Young’s modulus of polymer materials compared to silica offers enhanced stress sensitivity to POF based sensors which renders them great candidates for acoustic wave receivers and any kind of force detection. The main drawback in POF technology is perhaps the high fibre loss. In a lossless fibre the sensitivity of an interferometer is proportional to its cavity length. However, the presence of the attenuation along the optical path can significantly reduce the finesse of the Fabry-Perot interferometer and it can negatively affect its sensitivity at some point. The reflectivity of the two gratings used to form the interferometer can be also reduced as the fibre loss increases. In this work, a numerical model is developed to study the performance of POF based Fabry-Perot sensors formed by two uniform Bragg gratings with finite dimensions. Various optical and physical properties are considered such as grating physical length, grating effective length which indicates the point where the light is effectively reflected, refractive index modulation of the grating, cavity length of the interferometer, attenuation and operating wavelength. Using this model, we are able to identify the regimes in which the PMMA based sensor offer enhanced stress sensitivity compared to silica based one.
机译:研究了由有限尺寸的两个均匀布拉格光栅形成的基于聚合物光纤(POF)的Fabry-Perot传感器的应力敏感性。近年来,由于POF与二氧化硅相比具有不同的材料特性,因此受到了广泛的关注。生物相容性,较高的破坏应变和POF的高弹性是一些主要优点。与二氧化硅相比,聚合物材料的杨氏模量低得多,从而使基于POF的传感器的应力敏感性增强,这使其成为声波接收器和任何类型的力检测的理想之选。 POF技术的主要缺点可能是高光纤损耗。在无损光纤中,干涉仪的灵敏度与其腔长成正比。然而,沿着光路的衰减的存在会显着降低法布里-珀罗干涉仪的精细度,并且在某些时候会对其灵敏度产生负面影响。随着光纤损耗的增加,用于形成干涉仪的两个光栅的反射率也可以降低。在这项工作中,开发了一个数值模型来研究由有限尺寸的两个均匀布拉格光栅形成的基于POF的Fabry-Perot传感器的性能。考虑各种光学和物理特性,例如光栅的物理长度,指示有效反射光的点的光栅有效长度,光栅的折射率调制,干涉仪的腔长,衰减和工作波长。使用这种模型,我们能够确定与基于二氧化硅的传感器相比,基于PMMA的传感器提供增强的应力敏感性的方式。

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    Pospori, A.; Webb, D.J.;

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  • 年度 2016
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  • 正文语种 en
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