Investigation of Surface Plasmon Resonance based on Silicon Core Fiber for Large Range of Refractive Index Sensing

Yi-Lin Yu, H. Kishikawa, S. Liaw, N. Goto
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Abstract

In this article, we propose a concept which is the D-shaped silicon core fiber sensor based on surface plasmon resonance within the Mid-IR range. Au layer coating on the D-shaped side-face of silicon core fiber acts as a plasmonic active metal. By using the limited element methods, the sensing properties of the proposed sensor are investigated, and an average sensitivity up to 2.931 μm/RIU is obtained for the analyte of different refractive indices varies from 1.20 to 1.55. In addition, the Au coating layer and analyte are placed on the D-shaped side-face of the proposed fiber sensor; hence, this structure does not need to fill the voids. Thus, it is easy to fabricate and put to use. Also, the wavelength band in 2-μm is far from optical communication band, which means the proposed sensor could be connected with fiber network without any influence and crosstalk.
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基于硅芯光纤的表面等离子体共振大范围折射率传感研究
本文提出了一种基于表面等离子体共振的中红外d型硅芯光纤传感器的概念。镀在硅芯光纤d型侧面的金层作为等离子体活性金属。利用有限元法研究了该传感器的传感性能,对折射率为1.20 ~ 1.55的分析物的平均灵敏度可达2.931 μm/RIU。此外,将Au涂层和分析物放置在所述光纤传感器的d形侧面上;因此,该结构不需要填补空白。因此,它易于制造和使用。另外,2 μm波段距离光通信波段较远,因此可以与光纤网络连接,不会产生任何影响和串扰。
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