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Thinned Fiber Bragg Gratings as Refractive Index Sensors

机译:变薄的光纤布拉格光栅作为折射率传感器

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摘要

In this work, highly sensitive refractive index measurements have been experimentally demonstrated by using thinned fiber Bragg grating (FBG) sensors. When the cladding diameter is reduced, significant changes in the effective refractive index occur due to surrounding medium refractive index modifications, leading to Bragg wavelength shifts. Uniformly thinned FBGs have been obtained by using wet chemical etching in hydrofluoric acid solutions. In order to prove sensor sensitivity, experimental tests have been carried out by using glycerine solutions with well-known refractive indices. Obtained results agree well with the numerical analysis carried out by using the three-layer fiber model. If the cladding layer is completely removed, resolutions of approx= 10~(-5) and approx= 10~(-4) for the outer refractive index around 1.450 and 1.333, respectively, are possible. Finally, a novel approach based on the selective etching along the grating region has been analyzed, leading to high-sensitivity refractive index sensors based on intensity measurements.
机译:在这项工作中,通过使用薄化的光纤布拉格光栅(FBG)传感器,实验性地证明了高灵敏度折射率的测量。当包层直径减小时,由于周围介质折射率的变化,有效折射率会发生显着变化,从而导致布拉格波长偏移。通过在氢氟酸溶液中进行湿法化学刻蚀,可以获得厚度均匀的FBG。为了证明传感器的敏感性,已经通过使用具有众所周知的折射率的甘油溶液进行了实验测试。所得结果与使用三层纤维模型进行的数值分析非常吻合。如果覆盖层被完全去除,则对于大约1.450和1.333的外部折射率,分辨率分别为大约= 10〜(-5)和大约= 10〜(-4)。最后,分析了一种基于沿着光栅区域的选择性刻蚀的新颖方法,从而导致了基于强度测量的高灵敏度折射率传感器。

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