Publication | Open Access
Hybrid Fabry-Perot interferometer for simultaneous liquid refractive index and temperature measurement
70
Citations
29
References
2017
Year
Photonic SensorEngineeringOptical TestingHybrid Fabry-perot InterferometerInterferometryFiber OpticsBiomedical EngineeringBiosensing SystemsOptical PropertiesCalibrationInstrumentationBiophysicsPlanar Waveguide SensorPhotonicsFiber-tip StructureFiber Optic SensingOptical MeasurementBiophotonicsOptical SensorsHigh Sensitivity SensorSensorsBiomedical DiagnosticsTemperature MeasurementSensor DesignLiquid Refractive IndexOptical Sensor
A compact and high sensitivity sensor with a fiber-tip structure is proposed and demonstrated for simultaneously liquid refractive index (RI) and temperature sensing. The device is fabricated by inserting a tiny segment of capillary tube between single-mode fibers (SMFs) to form two cascaded Fabry-Perot interferometers (FPIs). The theoretical and experimental results demonstrate that the ambient liquid RI and temperature can be simultaneously determined by the intensity and shift of the resonant wavelength in the reflection spectrum. Our proposed device has the highest RI sensitivity of ~216.37 dB/RIU at the RI value of 1.30; a high spatial resolution owing to its compact size (with dimension <400 μm) makes it promising for high precision bio/chemical sensing applications.
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