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Unique temperature sensing characteristics of CO2-laser-notched long-period fiber gratings

机译:CO2激光刻痕长周期光纤光栅的独特温度感应特性

摘要

Long-period fiber gratings (LPFGs) are written by use of a focused CO2 laser beam to notch periodically on the surface of optical fibers. Temperature characteristics of the CO2-laser-notched LPFG are investigated in detailed to develop its sensing applications. It is shown that, for such LPFG, temperature sensitivity of resonant wavelength can be increased by creating deeper notches. The coupling from the fundamental core mode to a cladding mode in the LPFG can be enhanced by increasing the ambient temperature. The polarization-dependent loss (PDL) of the LPFG depends strongly on the ambient temperature. Such unique temperature characteristics can be used to solve the cross-sensitivity problem between the temperature and the tensile strain. So, the LPFG is a promising temperature sensor based on the wavelength modulation, on the intensity modulation and/or on the PDL modulation.
机译:通过使用聚焦的CO2激光束写入长周期光纤光栅(LPFG),以在光纤表面上定期刻槽。详细研究了带有CO2激光的LPFG的温度特性,以开发其传感应用。结果表明,对于这样的LPFG,可以通过创建更深的凹口来提高谐振波长的温度敏感性。 LPFG中从基本核心模式到包层模式的耦合可以通过提高环境温度来增强。 LPFG的偏振相关损耗(PDL)很大程度上取决于环境温度。这种独特的温度特性可用于解决温度与拉伸应变之间的交叉敏感性问题。因此,LPFG是基于波长调制,强度调制和/或PDL调制的有前途的温度传感器。

著录项

  • 作者

    Wang Y; Jin W; Wang DN;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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