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Plastic Optical Fiber Sensors and Magnetic Fluids: Plasmonic Tunability and Sensing properties for Measurements

机译:塑料光纤传感器和磁性流体:等离子调谐性和测量感测特性

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The optical properties of multimode plastic optical fibers (POFs) could be used for both the monitoring of magnetic field and for the tuning of plasmonic phenomenon, when a magnetic fluid was deposited on its cladding and it is connected in input to a plasmonic POF sensor. In this case, a magnetic field exerts a bending force on the POF covered with magnetic fluid, thus producing a variation of light in input to the plasmonic POF sensor and changing the plasmonic phenomenon. In particular, the focus of this work is the assessment of the tuning mechanism for the plasmonic phenomenon, which has been performed through a dedicated measurement approach. Preliminary experimental results are here presented to demonstrate how this approach can be used to change several plasmonic parameters, such as the sensitivity and the signal-to-noise ratio (SNR). This approach could be used in biosensing applications, where even smaller variation of the plasmonic response can significantly improve the detection of substances.
机译:当磁性流体沉积在其包层上时,多模塑料光纤光纤(POFS)的光学性能可用于监测磁场和转换等离子体现象的调整。在这种情况下,磁场在磁性流体覆盖的POF上施加弯曲力,从而产生输入到等离子体POF传感器的光的变化并改变等离子体现象。特别是,这项工作的重点是评估通过专用测量方法进行的等离子体现象的调整机制。这里提出了初步实验结果,以证明这种方法如何用于改变若干等离子体参数,例如灵敏度和信噪比(SNR)。这种方法可用于生物传感应用,在这种方法中可以显着改善等离子体反应的较小变化可以显着改善物质的检测。

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