Strain sensor based on hollow microsphere Fabry-Perot cavity

Catarina S. Monteiro, Susana O. Silva, O. Frazão
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Abstract

Fusion splicing technique was explored for the fabrication of two sensing structures based on hollow microsphere Fabry- Perot cavity. The first sensor proposed was fabricated with a hollow microsphere tip, working as a probe sensor. This structure was studied for lateral load pressure, yielding a 1.56 ± 0.01 nm/N sensitivity. The second sensing structure relied on an in-line hollow microsphere, which allowed the detection of lateral load, with a sensitivity of 2.62 ± 0.02 nm/N. Furthermore, the proposed structure enabled strain sensing, with a sensitivity of 4.66 ± 0.03 pm/με. The two sensing structures were subjected to temperature, presenting low thermal cross-sensitivity.
基于空心微球法布里-珀罗腔的应变传感器
探讨了基于空心微球法布里-珀罗腔的两种传感结构的融合拼接技术。提出的第一个传感器是由一个空心微球尖端制成的,作为一个探针传感器。该结构在横向负载压力下的灵敏度为1.56±0.01 nm/N。第二种传感结构基于直列空心微球,可以检测横向载荷,灵敏度为2.62±0.02 nm/N。此外,该结构实现了应变传感,灵敏度为4.66±0.03 pm/με。两种传感结构均受温度影响,具有较低的热交叉灵敏度。
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