A Selective Filling Photonic Crystal Fiber Voltage and Magnetic Field Dual-Parameter Sensor Based on Surface Plasmon Resonance
作者:Zhenkai Fan, Jiaming Liu, Junhao Meng, Juntao Lin, Yuqiu Fan, Dongwen Zhang · 发表于:IEEE Sensors Journal · 年份:2025 · DOI:10.1109/jsen.2025.3578148 · 被引用次数:3 · 研究领域:Advanced Fiber Optic Sensors、Photonic and Optical Devices、Plasmonic and Surface Plasmon Research
We proposed a photonic crystal fiber (PCF) sensor with selective filling of liquid crystal and magnetic fluid based on the principle of surface plasmon resonance (SPR) with the dual-parameter detection of voltage and magnetic field. Sodium is selected as the metallic material for coating into the four air holes in the second cladding of the PCF to excite the SPR phenomenon. Considering the relatively active chemical property of sodium, which is prone to react with water-based or kerosene-based magnetic fluids, an additional adhesive layer of titanium dioxide (TiO2) is deposited on the holes of the second cladding to protect the metal film. Liquid crystal (LC) and magnetic fluid (MF) are filled respectively in the four air holes of the second cladding of the PCF as this sensitive materials to realize dual-parameter detection of voltage and magnetic field. By using the full vector finite element method(FEM)under the condition of the perfectly matched layer (PML), the sensing performance is analyzed in this work. The simulation results indicate that the sensitivity of the designed sensor in the detection range of voltage from 0-60 V and magnetic field intensity from 267-910 Oe can reach 5.107 nm/V and 1416 pm/Oe respectively, which has a high-quality linearity and preferable detection independence.