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Micro-capillary-based self-referencing surface plasmon resonance fiber-optic biosensor

机译:基于微型毛细管的自我参考表面等离子体共振光纤生物传感器

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In this paper, we propose and demonstrate a novel self-referencing surface plasmon resonance (SPR) fiber-optic sensor which provides a Fabry-Perot (FP) interference referencing signal for temperature compensating. The sensor is fabricated by splicing a capillary partly coated with gold film between multimode fibers. The multimode fibers act as the lead-in and lead-out fibers while the capillary is used as sensing element. Because the FP interference and SPR effects can occur in the capillary simultaneously, the spectrum of the sensor exhibits SPR absorption and FP interference fringes. Due to the FP interference fringe sensitive to temperature while insensitive to refractive index (RI), it can be used as referencing signal and the SPR absorption was used as measuring signal. Experimental results show that this approach we presented can compensate temperature effect and develop this sensor as a practicable high-sensitivity sensing device. Moreover, as a self-referencing fiber-optic SPR sensor, this simple and low-cost element can be used for highly sensitive biosensing for further investigations.
机译:在本文中,我们提出并展示了一种新颖的自引用表面等离子体谐振(SPR)光纤传感器,其提供用于温度补偿的法布里 - 珀罗(FP)干扰引用信号。通过在多模纤维之间拼接有金膜的毛细管来制造传感器。多模纤维在用作传感元件时充当引入纤维和引出纤维。因为FP干扰和SPR效应同时可以发生在毛细管中,所以传感器的光谱表现出SPR吸收和FP干涉条纹。由于对温度敏感的FP干涉条纹,同时对折射率不敏感(RI),它可以用作参考信号,并且SPR吸收用作测量信号。实验结果表明,我们提出的这种方法可以补偿温度效应,并将该传感器作为一种可行的高灵敏度传感装置。此外,作为自引用光纤SPR传感器,这种简单且低成本的元件可用于高敏感的生物溶解,以进一步研究。

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