超细纤维
材料科学
干涉测量
曲率
光学
光纤
马赫-曾德尔干涉仪
负曲率
纤维
光纤传感器
渐变折射率纤维
光电子学
物理
复合材料
几何学
数学
作者
Xiaojun Zhu,Jiayi Qian,Wen Liu,Juan Cao,Yongjie Yang,Guoan Zhang,Yan Cai,Yuechun Shi,Wuming Wu
标识
DOI:10.1109/lpt.2024.3366918
摘要
We propose and demonstrate a new temperature and curvature sensor based on double peanut-shaped structures and tapered coreless fiber (CLF) using microfiber Mach-Zehnder interferometer (MMZI) technology. The peanut structure is comprised of single-mode fiber (SMF) and CLF, and fused sphere in each fiber end to create a high sensing performance. By combining the characteristics of the peanut-shaped structure and microfiber with a high evanescent field, this sensor can excite more high-order modes and obtain high-performance measurements. The experimental results demonstrate that the maximum intensity temperature sensitivity is 0.33 dB/°C when the temperature changes from 45 °C to 60 °C with a taper length of 5.5 mm. As far as we have known, it is the highest temperature sensitivity in the peanut-shaped structure with intensity modulation. Additionally, the sensor has an intensity curvature sensitivity reaches up to 16.56 dB/m -1 when the curvature varies from 0 m -1 to 0.23264 m -1 . These results highlight that the sensor has excellent curvature and temperature sensitivity, making it ideal for application in health monitoring, environmental monitoring, and medical applications.
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