多层表面等离子体塑料光纤共振用作化学传感器

Emad Khatar, Sudad Salman Bassam
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引用次数: 6

摘要

采用多模塑料光纤,研制并实现了一种基于表面等离子体共振(SPR)的化学光纤传感器。该传感器用于检测和测量各种化学材料(尿素、氨、甲醛和硫酸)的折射率和浓度,以及评估灵敏度、信噪比、分辨率和优值等性能参数。结果表明,在60nm、10 mm长、铝(Al)和金(Au)金属薄膜暴露于传感区域时,光纤基SPR传感器的灵敏度为4.4 μm,信噪比为0.20,品质因数为20,分辨率为0.00045。本文采用芯径为980 μm、含氟聚合物包层为20 μm、数值孔径为0.51的多模塑料光纤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Plasmon Plastic Optical Fiber Resonance with Multi-Layer as Chemical Sensor
A chemical optical fiber sensor based on surface plasmon resonance (SPR) was developed and implemented using multimode plastic optical fiber. The sensor is used to detect and measure the refractive index and concentration of various chemical materials (Urea, Ammonia, Formaldehyde and Sulfuric acid) as well as to evaluate the performance parameters such as sensitivity, signal to noise ratio, resolution and figure of merit. It  was noticed that the value of the sensitivity of the optical fiber-based SPR sensor, with 60nm and 10 mm long, Aluminum(Al) and Gold (Au) metals film exposed sensing region, was 4.4 μm, while the SNR was 0.20, figure of merit was 20 and resolution 0.00045. In this work a multimode plastic optical fiber with a core diameter of 980 μm, fluorinated polymer cladding of 20 μm and a numerical aperture of 0.51 was used.
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