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Ultraviolet inscription of long period gratings on polymer functionalized optical microfibers

机译:聚合物功能化光学超细纤维上长周期光栅的紫外线刻写

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Optical microfibers functionalized with surface microstructures, have attracted great attentions and been widely used in various optical devices. In this work, we demonstrated a technique to fabricate microstructures on polymer coated optical microfibers via ultraviolet inscription. Optical microfibers were firstly functionalized with ultraviolet photosensitivity by surface PMMA jackets. Microstructures were fabricated on optical microfibers via point-by-point ultraviolet inscription since the photo-etching in PMMA jackets. As an illustration, a 2-mm-long microfiber long period grating (MLPG) with a pitch of 80 μm was inscribed. The diameter of optical microfiber is 5.4 μm and a resonant dip of 15dB was observed at 1377 nm. The MLPG showed a high sensitivity of strain and axial force, i.e., -1.93 pm/με and -867 μNm. Sealed by a PMMA housing, the temperature sensitivity of MLPG could be enhanced from -12.75 pm/°C to -385.11 pm/°C. This technique demonstrates ultraviolet inscription of MLPGs and also provides an approach to fabricate microstructures on optical microfiber via ultraviolet exposure.
机译:用表面微结构功能化的光学微纤维引起了极大的关注,并被广泛用于各种光学装置中。在这项工作中,我们展示了一种通过紫外线铭刻在聚合物涂覆的光学微纤维上制造微结构的技术。光学微纤维首先通过表面PMMA护套以紫外线光敏作用进行功能化。自从在PMMA护套中进行光蚀刻以来,就通过逐点紫外线刻印在光学微纤维上制造了微结构。如图所示,刻有间距为80μm的2毫米长的超细纤维长周期光栅(MLPG)。光学微纤维的直径为5.4μm,在1377 nm处观察到15 dB的共振倾角。 MLPG对应变和轴向力显示出高灵敏度,即-1.93 pm /με和-867μN/ nm。通过PMMA外壳密封,MLPG的温度灵敏度可以从-12.75 pm /°C提升到-385.11 pm /°C。该技术证明了MLPG的紫外刻写,并且还提供了一种通过紫外线暴露在光学微纤维上制造微结构的方法。

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