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Influence of design parameters on the performance of a surface plasmon sensor based fiber optic sensor

机译:设计参数对基于表面等离子体激元传感器的光纤传感器性能的影响

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摘要

In the present work, the influence of two key design parameters, namely, fiber core diameter and sensing region length on the performance of a fiber optic surface plasmon resonance sensor, was experimentally observed. The sensor was designed with a multimode optical fiber of numerical aperture 0.40 and a thin silver layer of 50 nm thickness. The performance evaluation was carried out in terms of three performance parameters: sensitivity, signal-to-noise ratio and resolution. It was found that performance of the sensor tends to improve if fiber of large core diameter is used. Further, sensing region length should be taken as small as possible to attain highly sensitive and accurate sensing procedure. The experimental results are explained in terms of related physical background and mathematical expressions.
机译:在本工作中,通过实验观察了两个关键设计参数,即纤芯直径和传感区域长度对光纤表面等离子体激元共振传感器性能的影响。传感器设计为数值孔径为0.40的多模光纤和50 nm厚度的薄银层。根据三个性能参数进行了性能评估:灵敏度,信噪比和分辨率。已经发现,如果使用大芯径的光纤,则传感器的性能趋于提高。此外,感测区域的长度应尽可能小,以实现高度灵敏和精确的感测过程。根据相关的物理背景和数学表达式解释了实验结果。

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