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Fiber design and realization of point-by-point written fiber Bragg gratings in polymer optical fibers

机译:聚合物光纤中逐点写入光纤布拉格光栅的光纤设计与实现

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摘要

An increasing interest in making sensors based on fiber Bragg gratings (FBGs) written in polymer optical fibers (POFs) has been seen recently. Mostly microstructured POFs (mPOFs) have been chosen for this purpose because they are easier to fabricate compared, for example, to step index fibers and because they allow to tune the guiding parameters by modifying the microstructure. Now a days the only technique used to write gratings in such fibers is the phase mask technique with UV light illumination. Despite the good results that have been obtained, a limited flexibility on the grating design and the very long times required for the writing of FBGs raise some questions about the possibility of exporting POF FBGs and the sensors based on them from the laboratory bench to the mass production market. The possibility of arbitrary design of fiber Bragg gratings and the very short time required to write the gratings make the point-by-point grating writing technique very interesting and would appear to be able to fill this technological gap. On the other end this technique is hardly applicable for microstructured fibers because of the writing beam being scattered by the air-holes. We report on the design and realization of a microstructured polymer optical fiber made of PMMA for direct writ ing of FBGs. The fiber was designed specifically to avoid obstruction of the writing beam by air-holes. The realized fiber has been used to point-by-point write a 5 mm long fourth order FBG with a Bragg wavelength of 1518 nm. The grating was inspected under Differential Interferometric Contrast microscope and the reflection spectrum was measured. This is, to the best of our knowledge, the first FBGs written into a mPOF with the point-by-point technique and also the fastest ever written into a polymer optical fiber, with less than 2.5 seconds needed.
机译:近来,人们越来越对制造基于聚合物光纤(POF)中写入的光纤布拉格光栅(FBG)的传感器产生兴趣。为此目的,主要是选择微结构化的POF(mPOF),因为与阶跃折射率纤维相比,它们更易于制造,并且它们允许通过修改微结构来调整引导参数。如今,用于在此类光纤中写入光栅的唯一技术是具有紫外线照明的相位掩模技术。尽管已经获得了良好的结果,但是光栅设计的灵活性有限以及写入FBG所需的时间很长,这引发了一些关于将POF FBG和基于它们的传感器从实验室工作台输出到批量生产的可能性的问题。生产市场。光纤布拉格光栅任意设计的可能性以及写入光栅所需的时间非常短,这使得逐点光栅写入技术变得非常有趣,并且似乎能够填补这一技术空白。另一方面,由于写入光束被气孔散射,因此该技术几乎不适用于微结构纤维。我们报告了由PMMA制成的用于直接写入FBG的微结构聚合物光纤的设计和实现。光纤经过专门设计,可避免气孔阻塞写入光束。已实现的光纤已用于逐点写入布拉格波长为1518 nm的5 mm长的四阶FBG。在差分干涉对比显微镜下检查光栅,并测量反射光谱。据我们所知,这是第一批通过点对点技术写入mPOF的FBG,也是有史以来最快的写入聚合物光纤的FBG,所需时间不到2.5秒。

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