基于多空气孔微结构光纤的表面等离子体共振传感器
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郑州科技学院

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国家自然科学基金委员会青年基金项目《面向JPEG图像的篡改取证关键技术研究》(项目编号:62202141)


Surface Plasmon Resonance Sensor Based on Multi Air Hole Microstructure Fiber
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School of Electronic and Electrical Engineering,Zhengzhou University of Science and Technology,Zhengzhou Henan 450064

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    摘要:

    为了有效提高传感器的灵敏度,设计了一种基于表面等离子体共振进行折射率检测的光子晶体光纤传感器。包括方形晶格排列的空气孔的设计,其中两个金纳米线作为等离子体材料位于传感器表面。根据等离激元特性,纳米线的尺寸的设计促进了SPR和基本芯模的耦合,有助于提高传感器性能。然后采用有限元法对空气孔的大小和其在PCF中的排列以及纳米线的尺寸进行了系统的研究。最后经过测试,y偏振模式下,设计的传感器的波长灵敏度为50000(nm/RIU),幅值灵敏度为672.2(1/RIU),品质因数和分辨率的最大值分别为250 (1/RIU)和2×10-6(RIU)。该传感器具有高灵敏度和低制作成本等优点,在化学和生物医学检测方面具有广阔的应用前景,设计的传感器对宫颈癌细胞检测的灵敏度可达40000(nm/RIU)。

    Abstract:

    A simple design of photonic crystal fiber sensor which utilizes surface plasmon resonance for refractive index detection is inspected to achieve high sensitivity. The offered sensor comprises of air holes in square lattice arrangement where two gold nanowires as a plasmonic material are located at the surface. Size-dependent plasmonic features of nanowires facilitates the coupling of SPR and fundamental core modes which leads to enhancement of sensor performance. With the propose of achieving the best result, the geometrical structure including the size of air holes and their arrangement in the PCF and also the size of nanowires are examined, in this work. Sensing performance of the proposed sensor is evaluated by finite element method using Comsol Multiphysics software. In y-polarization mode, the maximum wavelength and amplitude sensitivities of 50000 (nm/RIU) and 672.2 (1/RIU) have been obtained. The corresponding maximum values of figure of merit and resolution are 250 (1/RIU) and 2 × 10?6 (RIU), respectively. This sensor includes remarkable prospect in chemical and biomedical detection because of its high sensitivity and low fabrication complexity. For example, the sensor performance is investigated for the cervical cancer cell detection and high sensitivity as 40000 (nm/RIU) is obtained.

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  • 收稿日期:2025-05-13
  • 最后修改日期:2025-07-23
  • 录用日期:2025-08-13
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