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Interferometric and localized surface plasmon based fiber optic sensor

机译:基于干涉和局部表面等离子体的光纤传感器

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We demonstrate a novel single point, multi-parameter, fiber optic sensor concept based on a combination of interferometric and plasmonic sensor modalities on an optical fiber end face. The sensor consists of a micro-Fabry-Perot interferometer in the form of a hemispherical stimuli-responsive hydrogel with immobilized gold nanoparticles. We present results of proof-of-concept experiments demonstrating local surface plasmon resonance (LSPR) sensing of refractive index (RI) in the visible range and interferometric measurements of volumetric changes of the pH stimuli-responsive hydrogel in near infrared range. The response of LSPR to RI ~ 877nm/RI) and the free spectral range (FSR) to pH ( (ΔpH)/(ΔFSR) = 0.09624/nm) were measured with LSPR relatively constant for hydrogel swelling degree and FSR relatively constant for RI. We expect this novel sensor concept to be of great value for biosensors for medical applications.
机译:我们展示了一种新颖的单点,多参数,光纤传感器概念,基于光纤端面的干涉和等离子体传感器方式的组合。传感器由具有固定金纳米颗粒的半球形刺激水凝胶形式的微法包围式干涉仪组成。我们提出了概念证据实验的结果,证明了局部表面等离子体共振(LSPR)在可见范围内的折射率(RI)的折射率(RI)和在近红外范围内的pH刺激响应水凝胶的体积变化的干涉测量。 LSPR对pH((Δph)/(Δfsr)= 0.09624 / nm)的Ri〜877nm / Ri对pH((Δph)/(Δfsr)= 0.09624 / nm)的响应是用LSPR相对恒定的用于水凝胶溶胀度,FSR相对恒定的RI 。我们预计这部新颖的传感器概念对于医疗应用的生物传感器具有很大的价值。

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