Laser & Optoelectronics Progress, Volume. 56, Issue 7, 070004(2019)

Research Progress of Photonic Crystal Fiber Refractive Index Sensors Based on Surface Plasmon Resonance Effect

Zhenkai Fan*, Zichao Zhang, Baozhu Wang, Yingying Wang, and Rongjia Zhao
Author Affiliations
  • School of Information Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, Hebei 050018, China
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    Figures & Tables(9)
    Electromagnetic field excitation processes of SPR and LSPR. (a) Schematic of electromagnetic field excitation of TM wave in metal-dielectric contact interface; (b) schematic of local surface plasmon excitation
    Structural diagrams of four types of D-type PCFs and preparation principle of D-type PCF. (a) Schematic of dual channel D-type PCF sensor[16]; (b) profile of double-parameter D-type PCF sensing structure [17]; (c) three-dimensional model of gold film coated D-type PCF SPR sensor [18]; (d) structural diagram of graphene layer coated D-type SPR-PCF sensor [19]; (e) SEM image of PCF before polishing; (f) cross-section of gold nanofilm coated D-type PCF; (g) side-polished surface of gold coat D-shap
    Slotted PCF-SPR sensor. (a) Cross-section of microstructured photonic bandgap SPR biosensor; (b) cross-section of microfluidic slotted PCF-SPR biosensor [25]
    Closed-type LC-PCF. (a) Cross-sectional diagram of LC-PCF sensor; (b) FEM meshing and boundary condition setting [29]
    PCF covered with liquid-filled metal layer. (a) Cross-sectional diagram of liquid-filled PCF sensor covered with gold layer; (b) cross-sectional diagram of liquid-filled PCF sensor covered with silver layer[31]
    Design of capillary-based SPR sensor. (a) Schematic of capillary-based multilayer-coated SPR sensor; (b) structure of capillary sensing region; (c) cross-section of sensing region[33]
    Structural diagram of DCHF-SPR sensor. (a) Structure A with left and right channel structures being same; (b) structure B with left and right channel structures not being same (left channel metal surface coated with high refractive index dielectric layer)[34]
    Advantages and disadvantages of main types of PCF-SPR sensors
    • Table 1. Structural parameters of different SPR-PCF refractive index sensors

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      Table 1. Structural parameters of different SPR-PCF refractive index sensors

      Fiber structureRI rangeAverage sensitivity /(nm·RIU-1)Resolution /RIU-1Reference
      D-shaped PCF sensor1.20~1.29110559.05×10-6[16]
      Graphene-coated optical fiber sensor1.33~1.3637004.6×10-5[19]
      Liquid-core PCF-SPR sensor1.45~1.4951.495~1.533700-55002.7×10-6-5.8×10-4[28]
      Dual-channel SPR optical fiber sensor1.33~1.38Left: 6143Right: 49931.45×10-5[31]
      Metal-coated optical fiber sensor1.46~1.5323903.33×10-5[34]
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    Zhenkai Fan, Zichao Zhang, Baozhu Wang, Yingying Wang, Rongjia Zhao. Research Progress of Photonic Crystal Fiber Refractive Index Sensors Based on Surface Plasmon Resonance Effect[J]. Laser & Optoelectronics Progress, 2019, 56(7): 070004

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    Paper Information

    Category: Reviews

    Received: Sep. 14, 2018

    Accepted: Nov. 1, 2018

    Published Online: Jul. 30, 2019

    The Author Email: Zhenkai Fan (zhkfan@hebust.edu.cn)

    DOI:10.3788/LOP56.070004

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