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Exploring the optical properties of exposed-core-based photonic-crystal fibers

机译:探索曝光芯基光子晶体纤维的光学性质

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A photonic-crystal fiber (PCF) based on the surface plasmon resonance (SPR) effect with low confinement loss and high sensitivity response is designed and its optical properties analyzed when varying different parameters. The SPR-based PCF design is analyzed to enable control over its light propagation and evanescent properties. In this investigation, gold (Au) is used as a plasmonic material to generate the SPR effect at the interface. The simulation results reveal a maximum sensitivity response of 45,303 nm/RIU with resolution of 7.0634 x 10(-6) and low confinement loss of 0.575 dB/cm in the wavelength range from 1.2 to 2 mu m. A high figure of merit of 378 with low full-width at half-maxima is also obtained. The proposed structure thus offers ultralow confinement loss and high sensitivity.
机译:设计了基于表面等离子体谐振(SPR)效应的光子晶体纤维(PCF),设计了具有低限制损失和高灵敏度响应的效应及其在不同参数时分析的光学性质。 分析了基于SPR的PCF设计,以实现控制其光传播和渐逝属性。 在该研究中,金(AU)用作等离子体材料,以在界面处产生SPR效果。 仿真结果显示了45,303nm / Riu的最大灵敏度响应,分辨率为7.0634×10(-6),波长范围为1.2至2μm的低约束损失为0.575db / cm。 还获得了半最大值低全宽的378的高度值。 因此,所提出的结构提供超级监控损失和高灵敏度。

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