Li Zhengyong, Liao Changrui, Yang Yatao, Wang Ying, Wang Yiping
Opt Lett. 2020 Aug 15;45(16):4571-4574. doi: 10.1364/OL.399577.
A non-diaphragm fiber gas pressure sensor based on a multimode interferometer (MI) using a hollow-core tube lattice fiber (HC-TLF) as a gas cell is proposed and experimentally demonstrated. The sensor is fabricated by fusion splicing a sandwich structure of a graded-index multimode fiber, HC-TLF, and lead-in/out single mode fiber. Several side-holes are drilled by using a femtosecond laser on the side wall of the HC-TLF to allow gas in and out of the fiber. The positions of side-hole in HC-TLF have been investigated during the experiments, which indicate that the highest gas pressure sensitivity existed as the side-hole located in the gap between adjacent cladding holes of the HC-TLF. The proposed structure exhibits a high sensitivity of 8.1 nm/MPa with the average gas fill time of 2.2 s. This sensor also has low temperature sensitivity and low temperature cross sensitivity of 12.3 pm/°C and 1.5 kPa/°C as the temperature rises to 400°C. In addition, the advantages of the gas pressure sensor, such as small size, rapid response, low temperature cross sensitivity, and simple fabrication process, make it suitable for high-pressure measurement in harsh conditions, e.g., downhole and ocean bottom.
提出并通过实验验证了一种基于多模干涉仪(MI)的非隔膜光纤气体压力传感器,该传感器使用空心管晶格光纤(HC-TLF)作为气室。该传感器通过熔接渐变折射率多模光纤、HC-TLF和引入/引出单模光纤的三明治结构制成。利用飞秒激光在HC-TLF的侧壁上钻出几个侧孔,以使气体进出光纤。实验过程中对HC-TLF中侧孔的位置进行了研究,结果表明,当侧孔位于HC-TLF相邻包层孔之间的间隙中时,气体压力灵敏度最高。所提出的结构具有8.1 nm/MPa的高灵敏度,平均气体填充时间为2.2 s。当温度升至400°C时,该传感器还具有12.3 pm/°C的低温灵敏度和1.5 kPa/°C的低温交叉灵敏度。此外,该气体压力传感器具有体积小、响应快、低温交叉灵敏度低和制造工艺简单等优点,适用于井下和海底等恶劣条件下的高压测量。