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Novel concept of multi-channel fiber optic surface plasmon resonance sensor

机译:多通道光纤表面等离子体激元共振传感器的新概念

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摘要

A novel multi-channel fiber optic surface plasmon resonance (SPR) sensor is reported. The sensing structure consists of a single-mode optical fiber, covered with a thin gold layer, which supports a surface plasmon (SP), and a Bragg grating. The Bragg grating induces coupling between the forward-propagating fundamental core mode and the back-propagating SP-cladding mode. As the SP-cladding modes are highly sensitive to changes in the refractive index of the surrounding medium, the changes can be accurately measured by spectroscopy of these hybrid modes. Multichannel capability is achieved by employing a sequence of Bragg gratings of different periods and their reading via the wavelength division multiplexing. Theoretical analysis and optimization based on the coupled-mode theory (CMT) is carried out and performance characteristics of the sensor are determined.
机译:报道了一种新型的多通道光纤表面等离子体共振(SPR)传感器。传感结构由覆盖有薄金层(支撑表面等离激元(SP))的单模光纤和布拉格光栅组成。布拉格光栅引起前向传播的基本核心模式和后向传播的SP包层模式之间的耦合。由于SP包层模式对周围介质的折射率变化高度敏感,因此可以通过这些混合模式的光谱法准确测量这些变化。通过使用一系列不同周期的布拉格光栅并通过波分复用进行读取,可以实现多通道功能。进行了基于耦合模式理论(CMT)的理论分析和优化,并确定了传感器的性能特征。

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