Publication | Open Access
Numerical Analysis and Design of Photonic Crystal Fiber Based Surface Plasmon Resonance Biosensor
24
Citations
27
References
2019
Year
Numerical AnalysisPhotonic SensorEngineeringBiochemical SensorsBiomedical EngineeringBiosensorsPhotonic Crystal FiberBiosensing SystemsMetal SurfaceBioimagingNanosensorBiophysicsNanophotonicsPlasmonic MaterialPhotonicsSensor ApplicationsPhotonic MaterialsFiber Optic SensingBiophotonicsSurface Plasmon ResonanceOptical SensorsPlasmonicsFinite Element MethodBiomedical SensorsBiomedical DiagnosticsBioelectronicsSensor DesignOptical Sensor
In this paper, a high sensitive photonic crystal fiber (PCF) based surface plasmon resonance (SPR) biosensor is numerically studied. In this structure, as a plasmonic material, gold (Au) is used because of its chemical activeness. And a layer of sensing medium is used outside of the fiber to make the structure effective. Any unknown biomolecular analyte can be detected by placing or flowing it on the metal surface. Guiding properties and results are investigated using Finite element method (FEM). Results show that maximum sensitivity is 4000 nm/RIU, as well as resolution, is 2.5 × 10−5 RIU of the proposed sensor.
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