Fluorescence-based temperature sensing using erbium-doped optical fibers with 1.48 μm pumping

被引:12
|
作者
Yoh Imai
Takaaki Hokazono
机构
[1] Department of Computer Science and Electronics Kyushu Institute of Technology,
关键词
optical fiber sensor; temperature sensing erbium-doped fiber; fluorescence spectrum; transition absorption; peak power ratio; absorption loss; photoluminescence;
D O I
10.1007/BF02936008
中图分类号
学科分类号
摘要
Temperature sensing using 1.54 μm fluorescence at the transition between the energy levels4I15/2 (ground state) and4I13/2 generated in an erbium-doped fiber with 1.48 μm pumping is proposed. The fluorescence has a peculiar spectral profile that possesses two peaks around 1.530 μm and 1.552 μm wavelengths. The temperature-dependent fluorescence is investigated in the temperature range between -50°C and 90°C. The power ratio between the two peaks increases with an increase in temperature. The sensitivity of the ratio is 0.007/°C on average in the measured temperature range. The total fluorescence power and the absorption loss at λ = 1480 nm in the fiber decrease as the temperature increases. Optical fiber temperature sensing immune from the fluctuation in pumping power can be performed using the peak power ratio and/or the absorption loss.
引用
收藏
页码:A117 / A120
相关论文
共 50 条
  • [31] TRANSMISSION EQUATIONS FOR SOLITON AMPLIFICATION IN ERBIUM-DOPED OPTICAL FIBERS
    ZHAO, Y
    CHAN, KT
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 1995, 9 (03) : 164 - 170
  • [32] OPTICAL SWITCHING IN TWIN-CORE ERBIUM-DOPED FIBERS
    CHU, PL
    WU, B
    OPTICS LETTERS, 1992, 17 (04) : 255 - 257
  • [33] ERBIUM-DOPED SILICA FIBERS FOR INTRINSIC FIBEROPTIC TEMPERATURE SENSORS
    MAURICE, E
    MONNOM, G
    DUSSARDIER, B
    SAISSY, A
    OSTROWSKY, DB
    BAXTER, GW
    APPLIED OPTICS, 1995, 34 (34): : 8019 - 8025
  • [34] State preparation by optical pumping in erbium-doped solids using stimulated emission and spin mixing
    Lauritzen, B.
    Hastings-Simon, S. R.
    de Riedmatten, H.
    Afzelius, M.
    Gisin, N.
    PHYSICAL REVIEW A, 2008, 78 (04):
  • [35] Frequency comb expansion based on optical feedback, highly nonlinear and erbium-doped fibers
    Melo, S. A. S.
    do Nascimento, A. R., Jr.
    Arismar Cerqueira Jr, S.
    Carvalho, L. H. H.
    Pataca, D. M.
    Oliveira, J. C. R. F.
    Fragnito, H. L.
    OPTICS COMMUNICATIONS, 2014, 312 : 287 - 291
  • [36] Enhancement of fluorescence-based sensing using microstructured optical fibres
    Afshar V., Shahraam
    Warren-Smith, Stephen C.
    Monro, Tanya M.
    OPTICS EXPRESS, 2007, 15 (26): : 17891 - 17901
  • [37] ERBIUM-DOPED FIBER AMPLIFIER PUMPED AT 1.48 MU-M WITH EXTREMELY HIGH-EFFICIENCY
    KASHIWADA, T
    SHIGEMATSU, M
    KOUGO, T
    KANAMORI, H
    NISHIMURA, M
    IEEE PHOTONICS TECHNOLOGY LETTERS, 1991, 3 (08) : 721 - 723
  • [38] LASING AT 1.00-MU-M IN ERBIUM-DOPED FLUOROZIRCONATE FIBERS
    ALLAIN, JY
    MONERIE, M
    POIGNANT, H
    ELECTRONICS LETTERS, 1989, 25 (05) : 318 - 319
  • [39] Optical solitons in erbium-doped fibres with higher-order effects and pumping
    Nakkeeran, K
    JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL, 2000, 33 (23): : 4377 - 4381
  • [40] Investigation of Temperature Measurement System Based on Fluorescence Intensity Ratio of Erbium-doped Fiber
    Yang, Tao
    Qiu, Yanqing
    Wang, Zhen
    Mao, Bangning
    Zhou, Shenghua
    2017 16TH INTERNATIONAL CONFERENCE ON OPTICAL COMMUNICATIONS & NETWORKS (ICOCN 2017), 2017,