材料科学
光时域反射计
反射计
双折射
光学
静水压力
光子晶体光纤
光纤
压力传感器
光电子学
压力测量
光子学
光子晶体
保偏光纤
光纤传感器
时域
物理
气象学
热力学
计算机科学
计算机视觉
作者
S. G. Mikhailov,Li Zhang,Thomas Geernaert,Francis Berghmans,Luc Thévenaz
标识
DOI:10.1109/jlt.2019.2904756
摘要
Although distributed fiber-optic sensing of axial strain and temperature is a well-established technique, there are almost no demonstrations of distributed hydrostatic pressure sensing. The main obstacle for such measurements is the low sensitivity to pressure of standard optical fibers. Structured fibers, such as photonic crystal fibers, can be made pressure sensitive by means of an optimized arrangement of their internal microstructure. In this paper, we demonstrate - for the first time to our knowledge -distributed birefringence and hydrostatic pressure measurements based on phase-sensitive optical time-domain reflectometry (OTDR) in highly birefringent photonic crystal fibers. We study the response to hydrostatic pressure of two dedicated pressure-sensitive photonic crystal fibers in the range from ~0.8 to ~67 bar with a 5-cm spatial resolution using a phase-OTDR approach. We find differential pressure sensitivities between the slow and fast polarization axes of the studied fibers of -219 MHz/bar and 95.4 MHz/bar. These values are ~3.8 to ~8.8 times larger than those demonstrated previously in distributed pressure measurements with other photonic crystal fibers.
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