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Comparison between femtosecond laser and fusion-arc inscribed long period gratings in photonic crystal fibre

机译:飞秒激光与聚弧内接长周期光栅在光子晶体光纤中的比较

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摘要

The use of high intensity femtosecond laser sources for inscribing fibre gratings has attained significant interest. The principal advantage of high-energy pulses is their ability for grating inscription in any material type without preprocessing or special core doping. In the field of fibre optical sensing LPGs written in photonic crystal fibre have a distinct advantage of low temperature sensitivity over gratings written in conventional fibre and thus minimal temperature cross-sensitivity. Previous studies have indicated that LPGs written by a point-by-point inscription scheme using a low repetition femtosecond laser exhibit post-fabrication evolution leading to temporal instabilities at room temperatures with respect to spectral location, strength and birefringence of the attenuation bands. These spectral instabilities of LPGs are studied in photonic crystal fibres (endlessly single mode microstructure fibre) to moderately high temperatures 100℃ to 200℃ and their performance compared to fusion-arc fabricated LPG. Initial results suggest that the fusion-arc fabricated LPG demonstrate less spectral instability for a given constant and moderate temperature, and are similar to the results obtained when inscribed in a standard single mode fibre.
机译:使用高强度飞秒激光源来刻写光纤光栅已经引起了极大的兴趣。高能脉冲的主要优势在于它们无需任何预处理或特殊的芯掺杂即可在任何材料类型中刻刻光栅的能力。在光纤传感领域中,用光子晶体光纤编写的LPG具有明显的优势,即低温灵敏度优于传统光纤编写的光栅,因此具有最小的温度交叉灵敏度。先前的研究表明,使用低重复飞秒激光的逐点刻录方案编写的LPG表现出制造后的演变,导致室温下在光谱范围,强度和衰减带的双折射方面存在时间不稳定。研究了LPG在光子晶体光纤(无休止的单模微结构光纤)中至100℃至200℃的中等高温下的光谱不稳定性,并研究了它们与聚弧制成的LPG相比的性能。初步结果表明,在给定的恒定温度和中等温度下,融合弧制成的LPG表现出较小的光谱不稳定性,并且与列入标准单模光纤中的结果相似。

著录项

  • 来源
    《Photonic crystal fibers III》|2009年|73570J.1-73570J.10|共10页
  • 会议地点 Prague(CZ);Prague(CZ)
  • 作者单位

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Cyprus University of Technology, Department of Electrical Engineering and Information Technology, 31 Archbishop Kyprianos, Lemessos 3036, Cyprus;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Frederick Institute of Technology, 7 Filokyprou, Nicosia, Cyprus;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

    Photonics Research Group, Aston University, Aston Triangle, Birmingham, B4 7ET, UK;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photonic crystal fibre; annealing; femtosecond laser; fusion-arc; long period grating;

    机译:光子晶体光纤退火;飞秒激光融合弧长周期光栅;

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