High-sensitivity photonic crystal fiber methane sensor with a ring core based on surface plasmon resonance and orbital angular momentum theory

被引:3
|
作者
Xu L. [1 ]
Liu C. [1 ]
Shi Y. [2 ]
Yi Z. [3 ]
Lv J. [1 ]
Yang L. [1 ]
Wang J. [1 ]
Chu P.K. [4 ]
机构
[1] School of Physics and Electronic Engineering, Northeast Petroleum University, Daqing
[2] Institute of Unconventional Oil & Gas, Northeast Petroleum University, Daqing
[3] Joint Laboratory for Extreme Conditions Matter Properties, Southwest University of Science and Technology, Mianyang
[4] Department of Physics, Department of Materials Science and Engineering, and Department of Biomedical Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon
来源
Optik | 2023年 / 286卷
关键词
Methane concentration detection; Mode coupling; Orbital angular momentum (OAM); Photonic crystal fiber (PCF); Sensitivity; Surface plasmon resonance (SPR);
D O I
10.1016/j.ijleo.2023.170941
中图分类号
学科分类号
摘要
Objective: With the advent of optical fiber sensing technology, photonic crystal fiber (PCF) sensors based on surface plasmon resonance (SPR) have become a research hotspot. Herein, a PCF-SPR methane sensor with a ring-core structure is designed based on the orbital angular momentum (OAM) theory. To our best knowledge, this type of sensor has not been reported yet. Methods: Through the finite element method, the PCF structure is designed and the appropriate filling material is selected. Results: The sensor consists of a three-layer clad air hole and an extra-large central gas channel, forming a ring core for beam transmission. By adding high refractive index material Amethyst and methane sensitive material to the central gas channel, the mode field is improved and the methane concentration is detected efficiently. Numerical results show that the sensor can stably transmit OAM modes and excite SPR with the OAM2,1 mode, namely the HE3,1 eigenmode. With the help of methane sensitive film, changes in methane concentration can greatly affect the refractive index distribution in PCF and alter the excitation characteristics of SPR. In the methane concentration range of 0–3.5 %, the resonance wavelength shifts from 4.52 µm to 4.58 µm. The average wavelength sensitivity reaches 17.07 nm/%, and the corresponding detection limit is 117 ppm. The results reveal that the designed PCF-SPR methane concentration sensor has excellent performance, which can stably transmit OAM mode while achieving SPR effect. It has great innovation and commercial potential in the petroleum, biomedical, chemical, and other industry. © 2023 Elsevier GmbH
引用
收藏
相关论文
共 50 条
  • [31] Photonic crystal fiber based on graphene surface plasmon resonance for high-sensitivity terahertz refractive index sensing
    He, Jie
    Wang, Jianxin
    Liu, Wei
    Lu, Xili
    Lv, Jingwei
    Yang, Lin
    Chu, Paul K.
    Liu, Chao
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 2024, 41 (07) : 1279 - 1286
  • [32] Improving the Sensitivity of Fiber Surface Plasmon Resonance Sensor by Filling Liquid in a Hollow Core Photonic Crystal Fiber
    Tan, Zhixin
    Li, Xuejin
    Chen, Yuzhi
    Fan, Ping
    PLASMONICS, 2014, 9 (01) : 167 - 173
  • [33] Three-core photonic crystal fiber surface plasmon resonance sensor
    Tong, Kai
    Wang, Fucheng
    Wang, Meiting
    Dang, Peng
    Wang, Yunxuan
    OPTICAL FIBER TECHNOLOGY, 2018, 46 : 306 - 310
  • [34] Sensitivity Enhanced Dual-Core Photonic Crystal Fiber Surface Plasmon Resonance Sensor Based on Gold Film
    Zhao, Zihong
    Pan, Honggang
    You, Qingcheng
    Zhu, Yukun
    Li, Rupeng
    Chen, Chunqi
    PLASMONICS, 2024,
  • [35] High Sensitivity and Wide Range Refractive Index Sensor Based on Surface Plasmon Resonance Photonic Crystal Fiber
    Wang, Fengmin
    Wei, Yong
    Han, Yanhong
    SENSORS, 2023, 23 (14)
  • [36] Analysis of High Sensitivity Photonic Crystal Fiber Sensor Based on Surface Plasmon Resonance of Refractive Indexes of Liquids
    Yan, Xin
    Li, Bin
    Cheng, Tonglei
    Li, Shuguang
    SENSORS, 2018, 18 (09)
  • [37] HIGH-SENSITIVITY TWO-CORE DUAL-POLARIZATION PHOTONIC-CRYSTAL-FIBER SURFACE-PLASMON-RESONANCE SENSOR BASED ON INDIUM TIN OXID
    Cui, Nan
    Pan, Honggang
    Zhang, Ailing
    Zhao, Zihong
    Chen, Zhipan
    Zhang, Bo
    Lin, Sihang
    Cao, Guangxiao
    JOURNAL OF RUSSIAN LASER RESEARCH, 2023, 44 (04) : 375 - 383
  • [38] High-Sensitivity Two-Core Dual-Polarization Photonic-Crystal-Fiber Surface-Plasmon-Resonance Sensor Based on Indium Tin Oxid
    Nan Cui
    Honggang Pan
    Ailing Zhang
    Zihong Zhao
    Zhipan Chen
    Bo Zhang
    Sihang Lin
    Guangxiao Cao
    Journal of Russian Laser Research, 2023, 44 : 375 - 383
  • [39] A high-sensitivity D-shaped photonic crystal fiber surface plasmon resonance sensor for low refractive index detection
    Qiu, Hu
    Li, Wei
    Zhu, Chen
    Xu, Jie
    Li, Jinze
    Bai, Gang
    JOURNAL OF OPTICS-INDIA, 2024, 53 (03): : 1897 - 1905
  • [40] A high-sensitivity D-shaped photonic crystal fiber surface plasmon resonance sensor for low refractive index detection
    Qiu, Hu
    Li, Wei
    Zhu, Chen
    Xu, Jie
    Li, Jinze
    Bai, Gang
    JOURNAL OF OPTICS-INDIA, 2023, 53 (3): : 1897 - 1905