Intermodal interference based refractive index sensor employing elliptical core photonic crystal fiber

被引:0
|
作者
吴徐洁 [1 ]
宋彬彬 [1 ]
吴继旋 [2 ]
黄薇 [1 ]
机构
[1] The Key Laboratory of Computer Vision and System of Ministry of Education, Tianjin Key Laboratory of Intelligence Computing and Novel Software Technology, Tianjin University of Technology
[2] Tianjin Key Laboratory of Optoelectronic Detection Technology and Systems, College of Electronic and Information Engineering, Tiangong University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TP212 [发送器(变换器)、传感器];
学科分类号
080202 ;
摘要
A refractive index(RI) sensor based on elliptical core photonic crystal fiber(EC-PCF) has been proposed. The asymmetric elliptical core introduces the polarization-dependent characteristics of the fiber core modes. The performances of intermodal interference between the intrinsic polarization fiber core modes are investigated by contrast in two interferometers based on the Mach-Zehnder(M-Z) and Sagnac interference model. In addition, the RI sensing characteristics of the two interferometers are studied by successively filling the three layers air holes closest to the elliptical core in the cladding. The results show that the M-Z interference between LP01and LP11mode in the same polarized direction is featured with the incremental RI sensing sensitivity as the decreasing interference length, and the infilled scope around the elliptical core has a weak correlation with the RI sensing sensitivity. Due to the high birefringence of LP11 mode, the Sagnac interferometer has better RI sensing performance, the maximum RI sensing sensitivity of 12 000 nm/RIU is achieved under the innermost one layer air holes infilled with RI matching liquid of RI=1.39 at the pre-setting EC-PCF length of 12 cm, which is two orders of magnitude higher than the M-Z interferometer with the same fiber length. The series of theoretical optimized analysis would provide guidance for the applications in the field of biochemical sensing.
引用
收藏
页码:271 / 275
页数:5
相关论文
共 50 条
  • [31] Twin core photonic crystal fiber refractive index sensor for early detection of blood cancer
    Mollah, Aslam
    Yousufali, Md
    Ankan, Istihad Mahmud
    Rahman, Md Mahabubur
    Sarker, Hasan
    Chakrabarti, Kisalaya
    SENSING AND BIO-SENSING RESEARCH, 2020, 29
  • [32] Dual-Core Photonic Crystal Fiber Plasmonic Refractive Index Sensor: A Numerical Analysis
    Paul, Alok Kumar
    Sarkar, Ajay Krishno
    Khaleque, Abdul
    PHOTONIC SENSORS, 2019, 9 (02) : 151 - 161
  • [33] Refractive index sensor using dual core photonic crystal fiber - glucose detection applications
    Maheswaran, S.
    Kuppusamy, P. G.
    Ramesh, S. M.
    Sundararajan, T. V. P.
    Yupapin, P.
    RESULTS IN PHYSICS, 2018, 11 : 577 - 578
  • [35] Liquid Core Photonic Quasi-Crystal Fiber Plasmonic Refractive Index Sensor for Wide Refractive Index Detection Range
    Ghaffari, Sanaz Shoar
    Makouei, Somaye
    ADVANCED ELECTROMAGNETICS, 2022, 11 (02) : 70 - 73
  • [36] Refractive index sensor based on photonic crystal nanocavity
    Cheng Qi
    Wang Shutao
    Lv Jiangtao
    Liu Na
    Pang Bo
    OPTICS COMMUNICATIONS, 2020, 464
  • [37] Refractive Index Sensor Based on Photonic Crystal Nanocavities
    Zargarzadeh, Mohammad
    Yavari, Mohammad Hasan
    Heydari, Mohammad
    Rezaei, Mohammad Hasan
    2021 29TH IRANIAN CONFERENCE ON ELECTRICAL ENGINEERING (ICEE), 2021, : 39 - 42
  • [38] Real-time refractive index sensor based on lensed photonic crystal fiber
    Park, Kwan Seob
    Mudhana, Gopinath
    Park, Seong Jun
    Kim, Young Ho
    Lee, Byeong Ha
    2010 15TH OPTOELECTRONICS AND COMMUNICATIONS CONFERENCE (OECC), 2010, : 664 - 665
  • [39] Polished photonic crystal fiber refractive index sensor based on surface plasmon resonance
    Zhang, Zhiwen
    Shen, Tao
    Wu, Haibin
    Feng, Yue
    Wang, Xin
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2021, 38 (12) : F61 - F68
  • [40] Advanced refractive index sensor based on photonic crystal fiber with elliptically split cores
    Ram Pravesh
    Dharmendra Kumar
    Bramha P. Pandey
    Vijay Shanker Chaudhary
    Dayashankar Singh
    Santosh Kumar
    Optical and Quantum Electronics, 2023, 55