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UV Bragg Grating Inscription in Germanium-doped Photonic Crystal Fibers

机译:掺锗光子晶体光纤中的紫外线布拉格光栅铭文

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摘要

The design flexibility of photonic crystal fibers has accelerated the development of specialty optical fibers for a wide variety of applications. Optical fiber sensor applications for instance can benefit from this fiber technology. Fiber Bragg grating inscriptions in photonic crystal fibers have been reported with inscription setups that go from continuous-wave to femtosecond pulsed laser sources. However, the compatibility of the microstructures in these fibers with conventional ultraviolet inscription techniques was never before investigated in a broad range of (Germanium doped) fibers.rnWe present UV laser induced dynamics of Bragg gratings growths in photonic crystal fibers with a hexagonal arrangement of 6 rings of airholes around a Germanium doped core region. The average refractive index increase and the refractive index modulation by the grating inscription process are compared for microstructures with several doping levels, airhole filling factors, airhole pitch distance and fiber orientation. We show how the parameters of the microstructure can influence the Bragg grating inscriptions. In addition we expand the range of fibers in which Bragg gratings, with reflection strengths that are useable for sensing purposes, can be inscribed to fibers with Germanium doping concentrations as low as 1.36 and 0.45 mol%.
机译:光子晶体光纤的设计灵活性加快了专用光纤在各种应用中的发展。例如,光纤传感器应用可以从这种光纤技术中受益。据报道,光子晶体光纤中的光纤布拉格光栅铭文具有从连续波到飞秒脉冲激光源的铭文设置。但是,以前从未在广泛的(掺锗)光纤中研究过这些光纤中的微结构与常规紫外铭刻技术的相容性。我们介绍了六边形排列为6的光子晶体光纤中紫外激光诱导的布拉格光栅生长的动力学。掺锗核心区域周围的气孔环。比较了具有几种掺杂水平,气孔填充因子,气孔间距距离和纤维取向的微结构的平均折射率增加和通过光栅刻写过程进行的折射率调制。我们展示了微结构的参数如何影响布拉格光栅的铭文。此外,我们扩大了光纤的范围,在该光纤中,可以将具有可用于传感目的的反射强度的布拉格光栅刻入锗掺杂浓度低至1.36和0.45 mol%的光纤。

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