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Polymer optical fiber tapers for biosensing applications

机译:用于生物传感应用的聚合物光纤锥度

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We report the fabrication and the characterization of perfluorinated cladded multimode polymer optical fibers tapers. The fibers employed was a graded-index polymer optical fibers with core and cladding diameters of 62.5/90 and 120/160 and very low refractive index (nCore = 1.356, nCladding = 1.342). The tapers were fabricated using the heat-and-pull technique. This approach permits a good prediction of the taper shape and waist dimension. Despite to the fact that taper core is not in direct contact with the external medium, these fiber tapers can be used for sensing applications. In fact, some of the guided modes are no more confined in the core region but can still be guided by the fiber in the cladding region. Therefore, there is an evanescent wave in the external medium, related to bound and tunneling rays that can pass the taper region in the cladding. In particular, the very low refractive indexes of the core-cladding perfluorinated polymers permit a strong enhancement of the power fraction in the evanescent wave in aqueous environments (n=1.33). We carried out experiments evanescent wave spectroscopy by immerging the tapered fiber water containing a dissolved organic blue dye (Methylene blue) for a concentration range 5e-8-le-5 M.
机译:我们报告了全氟化包层多模聚合物光纤锥的制造和表征。所使用的光纤是折射率渐变的聚合物光纤,其纤芯和包层直径分别为62.5 / 90和120/160,并且折射率非常低(nCore = 1.356,nCladding = 1.342)。锥度是使用热拉技术制造的。这种方法可以很好地预测锥形形状和腰围尺寸。尽管锥度纤芯不与外部介质直接接触,但这些光纤锥度仍可用于传感应用。实际上,某些引导模式不再局限于纤芯区域,而是仍可以由包层区域中的光纤引导。因此,外部介质中存在一个an逝波,该van逝波与可以穿过包层的锥形区域的束缚和隧穿射线有关。尤其是,芯包覆层全氟化聚合物的极低折射率允许在水性环境中的van逝波中大大提高功率分数(n = 1.33)。我们通过将含有溶解的有机蓝色染料(亚甲基蓝)的锥形纤维水浸入浓度范围为5e-8-le-5 M的锥形纤维水进行了e逝波光谱实验。

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