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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Theoretical analysis on SPR based optical fiber refractive index sensor with resonance wavelength covering communication C plus L band
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Theoretical analysis on SPR based optical fiber refractive index sensor with resonance wavelength covering communication C plus L band

机译:基于SPR基光纤折射率传感器的理论分析,具有谐振波长覆盖通信C加L频段

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摘要

Surface plasmon resonance (SPR) based optical fiber refractive index sensor with oxide film, such as magnesium oxide (MgO), tellurium dioxide (TeO2) or titanium dioxide (TiO2) on Au is theoretically analyzed. Simulation results show that sensitivity is increased and resonance wavelength is tunable to longer wavelength simultaneously by increasing the thickness of oxide. For different oxides with same thickness, SPR sensor coated with oxide with highest refractive index (Au-TiO2) shows the highest sensitivity. By changing the thickness of different oxides, sensors can work in communication band with high sensitivity. When the thicknesses of MgO, TeO2 and TiO2 are set at 80 nm, 45 nm and 40 nm respectively, the sensitivity are all larger than 9000 nm/RIU, meanwhile the resonance wavelength covers communication C+ L band(1530 nm-1625 nm).
机译:理论上地分析了Au氧化镁(MgO),氧化镁(MgO),二氧化碲(TiO 2)的基于氧化物膜的光纤折射率传感器的表面等离子体谐振(SPR)的光纤折射率传感器是在理论上进行的。 仿真结果表明,通过增加氧化物的厚度,增强灵敏度增加,并且共振波长同时可调谐到更长的波长。 对于具有相同厚度的不同氧化物,涂有具有最高折射率(Au-TiO 2)的涂有氧化物的SPR传感器显示出最高的灵敏度。 通过改变不同氧化物的厚度,传感器可以在具有高灵敏度的通信带中工作。 当MgO,TEO2和TiO 2的厚度分别设定为80nm,45nm和40nm时,灵敏度均大于9000nm / Riu,同时谐振波长覆盖通信C + L频带(1530nm-1625nm)。

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