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Highly sensitive strain sensor based on a sealed optical microfiber coupler

  • Kaiyue Qi
  • , Yundong Zhang*
  • , Jianfeng Sun
  • , Huaiyin Su
  • , Ying Guo
  • , Fuxing Zhu
  • , Guo Yi
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • Shanghai Spaceflight Precision Machinery Institute

Research output: Contribution to journalArticlepeer-review

Abstract

A simple, high-sensitivity strain sensor based on a sealed optical microfiber coupler (OMC) was proposed and demonstrated. Affected by the strain, the effective refractive index (RI), microfiber length, microfiber diameter changes the coupling coefficient of the OMC. Due to the uneven force of the port3 and port4, the strain sensitivity after encapsulation will improve, which is proved in the experiment. The mechanical simulation demonstrates that there is a dependence between strain sensitivity and waist diameter. The sensor with a 2.3 μm waist diameter presents a sensitivity of −18.351 pm/με regarding the variation of axial strain from 10 to 1200με, which was one order of magnitude higher than that of optical strain sensors based on fiber Bragg gratings. Experimental results demonstrate that the OMC sensor exhibits high sensitivity, strong stability and the capability of simultaneous measurement of strain and temperature.

Original languageEnglish
Article number102313
JournalOptical Fiber Technology
Volume59
DOIs
StatePublished - Oct 2020

Keywords

  • Optical microfiber coupler
  • Strain sensing
  • Temperature sensing

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