研究目的
To propose and analyze a single solid core flat fiber (SSCFF) refractive index sensor based on surface plasmon resonance (SPR) for detecting high refractive index analytes from 1.49 to 1.54.
研究成果
The proposed SSCFF sensor demonstrates high sensitivity (4782 nm/RIU) and resolution (2.09 × 10?5 RIU) for detecting high refractive index analytes. It offers advantages over traditional PCFs, including fabrication simplicity and suitability for portable devices and high refractive index analyte sensors.
研究不足
The study is limited to numerical analysis using FEM and does not include experimental validation. The sensor's performance is evaluated for a specific range of refractive indices (1.49 to 1.54).
1:Experimental Design and Method Selection:
The study employs the finite element method (FEM) for numerical analysis of the SSCFF sensor. The sensor design includes a single array of five circular holes with the central hole made of GeO2-doped silica forming the core, and other holes filled with air. The upper flat surface is coated with a thin plasmonic gold layer protected by titanium dioxide layers.
2:Sample Selection and Data Sources:
Analyte is situated on top of the titanium dioxide layers for refractive index measurement.
3:List of Experimental Equipment and Materials:
The sensor uses a GeO2-doped silica core, air holes, a gold layer, and titanium dioxide layers.
4:Experimental Procedures and Operational Workflow:
The wavelength interrogation technique is applied to study the coupling characteristics between the core-guided mode and the surface plasmon mode.
5:Data Analysis Methods:
The study analyzes the loss spectrum and the dependence of surface plasmonic resonance wavelength on analyte refractive index.
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