Loop Mirror Multi -Wavelength Brillouin Fiber Laser Utilizing Semiconductor Optical Amplifier in comparison with DCF and SMF

被引:0
|
作者
Jalil, S. N. C. A. [1 ]
Hambali, N. A. M. A. [1 ]
Wahid, M. H. A. [1 ]
Malek, A. Z. [1 ]
Shahimin, M. M. [2 ]
Yasin, M. N. M. [1 ]
机构
[1] Univ Malaysia Perlis, Sch Microelect Engn, SPILS, Pauh Putra Main Campus, Arau 02600, Perlis, Malaysia
[2] Natl Def Univ Malaysia UPNM, Fac Engn, Dept Elect & Elect Engn, Kuala Lumpur 5700, Malaysia
关键词
D O I
10.1063/1.5080858
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This paper proposed the nonlinear optical loop mirror multi-wavelength Brillouin fiber laser utilizing semiconductor optical amplifier in comparison with DCF and SMF. The simulation comprises nonlinear optical loop mirror with a 3-dB coupler for measurement of the output signals using two types of gain medium which is dispersion compensation fiber compared to the use of a standard single mode fiber. At 6 km of dispersion compensating fiber, with maximum semiconductor optical amplifier injection current of 0.7A have the ability to produce 9 signals. Compare to single mode fiber at 6km length, with maximum semiconductor optical amplifier injection current of 0.8A can generated 11 signals. The performance of multi-wavelength signals generation is achievable by using a fiber loop laser system by utilizing a semiconductor optical amplifier with dispersion compensating fiber and single mode fiber as a gain media in the loop mirror multi-wavelength Brillouin fiber laser. However, each of gain media having its own limitation based on the parameters used and during design simulation.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Loop Mirror Multi-wavelength Brillouin Fiber Laser Utilizing Semiconductor Optical Amplifier and Fiber Bragg Grating
    Idris, N. A.
    Hambali, N. A. M. Ahmad
    Wahid, M. H. A.
    Ariffin, N. A.
    Shahimin, M. M.
    Azidin, M. A. M.
    ENGINEERING TECHNOLOGY INTERNATIONAL CONFERENCE 2016 (ETIC 2016), 2017, 97
  • [2] Double Loop Mirror Multi -Wavelengths Brillouin Fiber Laser Utilizing Semiconductor Optical Amplifier based on SMF as gain medium
    Jalil, S. N. C. A.
    Hambali, N. A. M. A.
    Wahid, M. H. A.
    Malek, A. Z.
    Shahimin, M. M.
    Yasin, M. N. M.
    4TH ELECTRONIC AND GREEN MATERIALS INTERNATIONAL CONFERENCE 2018 (EGM 2018), 2018, 2045
  • [3] Multi-wavelength Brillouin Fiber Laser with Fiber Bragg Grating Employs Loop Mirror
    Idris, N. A.
    Hambali, N. A. M. A.
    Malek, A. Z.
    Apandi, N. H. M.
    Wahid, M. H. A.
    Azidin, M. A. M.
    Isa, S. S. M.
    2ND INTERNATIONAL CONFERENCE ON GREEN DESIGN AND MANUFACTURE 2016 (ICONGDM 2016), 2016, 78
  • [4] Multiwavelength Brillouin Fiber Laser Employing Semiconductor Optical Amplifier and microfiber Mach-Zehnder Interferometer in Loop Mirror
    Thangavel, V
    Elham, H.
    Hambali, N. A. M. Ahmad
    Wahid, M. H. A.
    Shahimin, M. M.
    Yasin, M. N. M.
    Harun, A.
    4TH ELECTRONIC AND GREEN MATERIALS INTERNATIONAL CONFERENCE 2018 (EGM 2018), 2018, 2045
  • [5] Multi-wavelength Brillouin-Raman fiber laser utilizing enhanced nonlinear amplifying loop mirror design
    Mamdoohi, G.
    Sarmani, A. R.
    Yaacob, M. H.
    Mokhtar, M.
    Mahdi, M. A.
    OPTICS EXPRESS, 2013, 21 (26): : 31800 - 31808
  • [6] OPTICAL LOOP MIRROR WITH SEMICONDUCTOR-LASER AMPLIFIER
    EISELT, M
    ELECTRONICS LETTERS, 1992, 28 (16) : 1505 - 1507
  • [7] Semiconductor optical amplifier-based multi-wavelength ring laser utilizing photonic crystal fiber
    Harun, S. W.
    Parvizi, R.
    Shahabuddin, N. S.
    Yusoff, Z.
    Ahmad, H.
    JOURNAL OF MODERN OPTICS, 2010, 57 (08) : 637 - 640
  • [8] A tunable multiwavelength Brillouin fiber laser with a semiconductor optical amplifier
    Zhang, L.
    Zhang, Z. X.
    Xu, Z. W.
    LASER PHYSICS, 2013, 23 (04)
  • [10] Effect of hybrid optical amplifier in multiwavelength fiber laser utilizing Sagnac loop mirror interferometer
    Sulaiman, Abdul Hadi
    Aden, Abdisamad Ali
    Ismail, Aiman
    Abdullah, Fairuz
    Jamaludin, Md Zaini
    OPTICAL FIBER TECHNOLOGY, 2022, 74