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首页> 外文期刊>Journal of optics >Design and analysis of surface plasmon resonance sensor based on high-birefringent microstructured optical fiber
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Design and analysis of surface plasmon resonance sensor based on high-birefringent microstructured optical fiber

机译:基于高双折射微结构光纤的表面等离子体激元共振传感器的设计与分析

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摘要

Optical fiber based surface plasmon resonance (SPR) sensors are favored by their high sensitivity, compactness, remote and in situ sensing capabilities. Microstructured optical fibers (MOFs) possess microfluidic channels extended along the entire length right next to the fiber core, thereby enabling the infiltrated biochemical analyte to access the evanescent field of guided light. Since SPR can only be excited by the polarization vertical to metal surface, external perturbation could induce the polarization crosstalk in fiber core, thus leading to the instability of sensor output. Therefore for the first time we analyze how the large birefringence suppresses the impact of polarization crosstalk. We propose a high-birefringent MOF based SPR sensor with birefringence larger than 4 x 10(-4) as well as easy infiltration of microfluidic analyte, while maintaining sensitivity as high as 3100 nm/RIU.
机译:基于光纤的表面等离子体激元共振(SPR)传感器因其高灵敏度,紧凑性,远程和原位传感能力而受到青睐。微结构化光纤(MOF)具有沿着整个长度延伸的,紧邻光纤纤芯的微流体通道,从而使渗透的生化分析物能够进入引导光的e逝场。由于SPR只能由垂直于金属表面的偏振激发,因此外部干扰可能会在光纤纤芯中引起偏振串扰,从而导致传感器输出不稳定。因此,我们第一次分析大双折射如何抑制偏振串扰的影响。我们提出了一种基于高双折射MOF的SPR传感器,其双折射大于4 x 10(-4)且微流体分析物易于渗透,同时保持了高达3100 nm / RIU的灵敏度。

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