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Arc-Induced Long Period Gratings from Standard to Polarization-Maintaining and Photonic Crystal Fibers

机译:从标准到保偏和光子晶体光纤的电弧诱导长周期光栅

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摘要

In this work, we report about our recent results concerning the fabrication of Long Period Grating (LPG) sensors in several optical fibers, through the Electric Arc Discharge (EAD) technique. In particular, the following silica fibers with both different dopants and geometrical structures are considered: standard Ge-doped, photosensitive B/Ge codoped, P-doped, pure-silica core with F-doped cladding, Panda type Polarization-maintaining, and Hollow core Photonic crystal fiber. An adaptive platform was developed and the appropriate “recipe” was identified for each fiber, in terms of both arc discharge parameters and setup arrangement, for manufacturing LPGs with strong and narrow attenuation bands, low insertion losses, and short length. As the fabricated devices have appealing features from the application point of view, the sensitivity characteristics towards changes in different external perturbations (i.e., surrounding refractive index, temperature, and strain) are investigated and compared, highlighting the effects of different fiber composition and structure.
机译:在这项工作中,我们报告了有关通过电弧放电(EAD)技术在多根光纤中制造长周期光栅(LPG)传感器的最新结果。特别是,考虑了以下具有不同掺杂剂和几何结构的二氧化硅纤维:标准的Ge掺杂,光敏B / Ge共掺杂,P掺杂,带有F掺杂包层的纯硅纤芯,熊猫型偏振保持和空心核心光子晶体光纤。开发了一个自适应平台,并根据电弧放电参数和设置安排,为每条光纤确定了合适的“配方”,以制造具有强而窄的衰减带,低插入损耗和短长度的液化石油气。由于从应用的角度来看,制成的器件具有吸引人的特征,因此研究并比较了对不同外部扰动(即周围的折射率,温度和应变)变化的敏感度特性,突出了不同纤维成分和结构的影响。

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