IEEE Access · 2019 · 42 citations · 21 references
PhotonicsPhotonic SensorEngineeringOptical PropertiesOptical TestingTransverse Load SensorFiber Optic SensingCavity FpiFiber OpticsParallel Structured FpisInstrumentationFiber OpticOptical SensorCavity Fiber-optic Fpi
The parallel structured fiber-optic Fabry-Perot interferometer (FPI) is theoretically proposed and experimentally demonstrated for transverse load measurement based on Vernier-effect. This kind of sensor consists of a hollow microsphere cavity fiber-optic FPI for sensing function and an air cavity for reference, both of which are parallel connected by a 3 dB optical fiber coupler with the functionality of Vernier-effect. Experimental results indicate that the proposed sensor can provide a high transverse load sensitivity of -3.75 nm/N, which is 3.4 times higher than single hollow microsphere cavity FPI. Moreover, with the excellent features of low cost, easy fabrication, and stable sensing, the parallel structured FPIs proposed will provide a new vision for high sensitivity transverse load sensing.
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Tom Claes, Wim Bogaerts, Peter Bienstman · Optics Express · 2010 · 292 citations · Full text
Sub-micron silica diaphragm-based fiber-tip Fabry–Perot interferometer for pressure measurement
Changrui Liao, Shen Liu, Lei Xu et al. · Optics Letters · 2014 · 212 citations
High-sensitivity strain sensor based on in-fiber improved Fabry–Perot interferometer
Shen Liu, Yiping Wang, Changrui Liao et al. · Optics Letters · 2014 · 212 citations