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Design of a dual-core dual-hole fiber for hydrostatic pressure sensing

机译:用于静水压力传感的双芯双孔光纤的设计

摘要

We propose a novel dual-core dual-hole fiber (DCDHF) for hydrostatic pressure sensing. Two fiber cores and two air holes are employed in the cross-section of the DCDHF. The mode coupling between two fiber cores of the DCDHF is sensitive to the pressure-induced index change which ensures the detection of the pressure applied to the DCDHF. Two large air holes are employed to enhance the pressure-induced index change for the DCDHF which essentially provides a built-in transducing mechanism to enhance the sensitivity for the DCDHF-based pressure sensor. The DCDHF-based pressure sensor is simply formed by splicing a segment of DCDHF to two segments of single mode fibers and its operation principle is introduced in details. Simulations show that there is a linear relationship between the pressure untilized on the DCDHF and the wavelength shift of the output spectrum at one fiber core of the DCDHF with a fixed length when the polarized light is injected into another fiber core of the DCDHF. DCDHFs with different structure parameters for pressure sensing are also investigated.
机译:我们提出了一种用于静水压力传感的新型双芯双孔光纤(DCDHF)。 DCDHF的横截面中使用了两个纤芯和两个气孔。 DCDHF的两个光纤纤芯之间的模式耦合对压力引起的折射率变化很敏感,从而确保检测到施加到DCDHF的压力。两个大的气孔用于增强DCDHF的压力感应指数变化,这实质上提供了内置的换能机制,以增强基于DCDHF的压力传感器的灵敏度。通过将一段DCDHF拼接到两段单模光纤上,就可以简单地构成基于DCDHF的压力传感器,并详细介绍其工作原理。仿真表明,当偏振光注入DCDHF的另一光纤纤芯时,DCDHF上施加的压力与固定长度的DCDHF的一个光纤纤芯上输出光谱的波长偏移之间存在线性关系。还研究了具有不同结构参数的DCDHF,用于压力传感。

著录项

  • 作者

    Chen D; Hu G; Tse MLV; Tam HY;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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