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Simultaneous strain and temperature sensing using a slightly tapered optical fiber with an inner cavity

机译:使用带有内部空腔的稍锥形光纤同时进行应变和温度感测

摘要

An ultracompact optical fiber mode interferometer capable of performing simultaneous strain and temperature sensing is demonstrated. The device is fabricated by using femtosecond laser micromachining together with fusion splicing techniques and followed by a tapering process. The transmission spectrum of the device exhibits a number of resonance wavelength dips, corresponding to different orders of cladding mode, which allow simultaneous strain and temperature sensing by monitoring the variation of selected two wavelength dips. The sensitivity achieved is -16.12 pm με-1 and 85.95 pm°C-1 for strain and temperature, respectively. The device has a spatially precise sensing capability owing to the small size of the inner air-cavity.
机译:对能够同时进行应变和温度传感的超紧凑型光纤模式干涉仪进行了演示。该设备是通过使用飞秒激光微加工以及融合拼接技术,然后进行渐缩工艺来制造的。器件的透射光谱表现出许多共振波长骤降,对应于不同阶数的包层模式,通过监测选定的两个波长骤降的变化,可以同时进行应变和温度传感。应变和温度的灵敏度分别为-16.12 pmμε-1和85.95 pm°C-1。由于内部空腔的尺寸小,该设备具有精确的空间感测能力。

著录项

  • 作者

    Chen HF; Wang DN; Wang Y;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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