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Femtosecond Laser Inscribed Bragg Gratings in Low Loss CYTOP Polymer Optical Fiber

机译:飞秒激光内接低损耗CYTOP聚合物光纤中的布拉格光栅

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We report on the first inscription of fiber Bragg gratings (FBGs) in cyclic transparent optical polymer (CYTOP)-perfluorinated polymer optical fibers (POFs). We have used a direct write method with a femtosecond laser operating in the visible. The FBGs have a typical reflectivity of 70%, a bandwidth of 0.25 nm, a 3-mm length, and an index change of . The FBGs operate in the -band, where CYTOP offers key advantages over polymethyl methacrylate optical fibers, displaying significantly lower optical loss in the important near-infrared (NIR) optical communications window. In addition, we note that CYTOP has a far lower affinity for water absorption and a core-mode refractive index that coincides with the aqueous index regime. These properties offer several unique opportunities for POF sensing at NIR wavelengths, such as compatibility with existing optical networks, the potential for POF sensor multiplexing and suitability for biosensing. We demonstrate compatibility with a commercial Bragg grating demodulator.
机译:我们报告了在循环透明光学聚合物(CYTOP)-全氟化聚合物光纤(POF)中的光纤布拉格光栅(FBG)的第一个铭文。我们已经使用飞秒激光在可见光下运行的直接写入方法。 FBG的典型反射率为70%,带宽为0.25 nm,长度为3 mm,折射率变化为。 FBG在-频段内运行,其中CYTOP提供了优于聚甲基丙烯酸甲酯光纤的关键优势,在重要的近红外(NIR)光通信窗口中显示出明显更低的光损耗。此外,我们注意到CYTOP对水的吸收亲和力低得多,并且其核心模态折射率与水指数体系相吻合。这些特性为在NIR波长下进行POF传感提供了许多独特的机会,例如与现有光学网络的兼容性,POF传感器复用的潜力以及对生物传感的适用性。我们展示了与商用布拉格光栅解调器的兼容性。

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