Publication | Closed Access
Refractive index sensor based on plastic optical fiber with tapered structure
69
Citations
20
References
2014
Year
Photonic SensorOptical MaterialsEngineeringFiber OpticsBiomedical EngineeringBiosensing SystemsOptical PropertiesPlanar Waveguide SensorFiber Optic SensingRefractive Index SensorFiber OpticRefractive IndexOptical SensorsBiomedical SensorsMultimaterial FiberSensorsBiomedical DiagnosticsOptical WaveguidesSensor DesignTapered StructurePlastic Optical FiberOptical Sensor
This work reports a refractive index sensor made of plastic optical fiber (POF) with tapered structure. Transmission loss is measured when the external environment's refractive index changes from 1.33 to 1.41. Three wavelengths (532, 633, and 780 nm) are used to evaluate the sensitivity of the sensor, and results indicate that 633 nm is the best sensing wavelength due to the increased levels of sensitivity achieved at this wavelength. A biconical sensing structure is designed to enhance the sensitivity of the sensor. A sensitivity of 950 μW/RIU at 633 nm is obtained for a biconical sensing structure when launched power is 1 mW. Due to its sensitivity to the refractive index and simple construction, POF with tapered structure has potential applications in the biosensing field.
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