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Twin-core fiber SPR sensor

机译:双芯光纤SPR传感器

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We propose and demonstrate a novel surface plasmon resonance (SPR)-sensing approach by using the fundamental mode beam based on a twin-core fiber (TCF). Although normally in a fiber SPR sensor, a multimode fiber (MMF) has often been used to improve the coupling efficiency; for improving fiber SPR sensor sensitivity, single-mode beam is optimal. We provide a novel method to employ the single (fundamental)-mode beam to SPR sense based on the TCF. We grind the TCF tip to be a frustum wedge shape, and plate a 50-nm sensing gold film on the end face, and two 500-nm reflected gold films on the side faces of the wedge tip. By using this new configuration, we reduce the mode noise effectively and get a high testing sensitivity (the testing highest sensitivity reaches to 6463 nm/RIU). This SPR probe can be applied in a microfluidic chip and monitors the refractive index (RI) charges of the flow liquid in the microfluidic channel in real-time. The probe successfully monitors the refractive index of liquid ranged from 1.3333 to 1.3706, and the average sensitivity reaches to 5213 nm/RIU in the solution, which is much higher than most multimode SPR systems. (C) 2015 Optical Society of America
机译:通过使用基于双芯光纤(TCF)的基本模式光束,我们提出并演示了一种新颖的表面等离子体共振(SPR)传感方法。尽管通常在光纤SPR传感器中使用多模光纤(MMF)来提高耦合效率。为了提高光纤SPR传感器的灵敏度,单模光束是最佳的。我们提供了一种新颖的方法,可基于TCF将单模(基本)光束应用于SPR传感。我们将TCF尖端研磨成截头圆锥体形状,并在端面上镀上50 nm的感测金膜,并在楔形尖端的侧面镀上两张500 nm的反射金膜。通过使用这种新配置,我们有效地降低了模式噪声并获得了很高的测试灵敏度(测试最高灵敏度达到了6463 nm / RIU)。该SPR探针可应用于微流控芯片中,并实时监控微流控通道中流动液体的折射率(RI)电荷。该探头可成功监测液体的折射率,范围为1.3333至1.3706,溶液中的平均灵敏度达到5213 nm / RIU,远高于大多数多模SPR系统。 (C)2015年美国眼镜学会

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