首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >A photonic crystal fiber based on surface plasmon resonance temperature sensor with liquid core
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A photonic crystal fiber based on surface plasmon resonance temperature sensor with liquid core

机译:基于液芯表面等离子体共振温度传感器的光子晶体光纤

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A Photonic Crystal Fiber based on Surface Plasmon Resonance (PCF-SPR) temperature sensor with liquid core is proposed in this paper. Glycerin liquid with a high refractive index is filled in the central air hole of the hollow core photonic bandgap (PBG) PCF, the transmission type of PCF will change to total internal reflection (TIR), which will significantly broaden its transmission bands. The refractive index of glycerin changes with temperature within a certain temperature range and can be detected by measuring the transmission spectra, thus the accurate ambient temperature can be obtained. Numerical results indicate that the plasmon on the surface of the gold-coated channels containing glycerin liquid can be intensively excited by the core-guided mode and the excitation of the plasmon mode is sensitive to the change of the temperature. Resolution of the PCF-SPR temperature sensor with liquid core is demonstrated to be as low as 4 × 10 ~(-6) RIU, where RIU means refractive index unit.
机译:提出了一种基于带液芯的表面等离子体共振温度传感器的光子晶体光纤。高折射率的甘油液体填充在空心光子带隙(PBG)PCF的中央气孔中,PCF的透射类型将变为全内反射(TIR),这将大大拓宽其透射带。甘油的折射率在一定温度范围内随温度变化,并且可以通过测量透射光谱来检测,因此可以获得准确的环境温度。数值结果表明,含甘油液体的镀金通道表面的等离激元可以被核心引导模式强烈激发,并且等离激元模式的激发对温度的变化敏感。具有液芯的PCF-SPR温度传感器的分辨率被证明低至4×10〜(-6)RIU,其中RIU表示折射率单位。

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