• Laser & Optoelectronics Progress
  • Vol. 51, Issue 6, 61405 (2014)
Wang Ying*, Luo Zhengqian, Xiong Fengfu, Cai Zhiping, and Xu Huiying
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/lop51.061405 Cite this Article Set citation alerts
    Wang Ying, Luo Zhengqian, Xiong Fengfu, Cai Zhiping, Xu Huiying. Numerical Optimization of 3~5 μm Mid-Infrared ZBLAN Fiber Raman Lasers[J]. Laser & Optoelectronics Progress, 2014, 51(6): 61405 Copy Citation Text show less
    References

    [1] Digonnet M J F. Rare-Earth-Doped Fiber Lasers and Amplifiers[M]. Second Edition, Revised and Expanded. New York : Marcel Dekker, 2001.

    [2] Qi Wei, Liu Peng, Lu Helin, et al.. 1270 nm hybrid cascaded phosphosilicate fiber Raman laser[J]. Chinese J lasers, 2013, 40(3): 0302008.

    [3] Huang Chaohong, Wei Dong, Lin Jiali, et al.. High power 1.48 μm home-made phosphosilicate fiber cascaded Raman laser[J]. Chinese J Lasers, 2008, 35(s2): 33-36.

    [4] Qin Zujun, Zhou Xiaojun, Wu Haocheng, et al.. Design of multi-wavelength cascaded Raman fiber lasers[J]. Acta Optica Sinica, 2009, 29(1): 244-248.

    [5] Luo Z Q, Ye C C, Fu H Y, et al.. Raman fiber laser harmonically mode-locked by exploiting the intermodal beating of CW multimode pump source[J]. Opt Express, 2012, 20(18): 19905-19911.

    [6] IPG Photonics. Mid-infrared lasers[OL]. http://www.ipgphotonics.com. 2013-9-2.

    [7] Ehrenreich T, Leveille R, Majid I, et al.. 1-kW, all-glass Tm: fiber laser[C]. SPIE, 2010, 7580: 758016.

    [8] Bian J, Nie J, Sun X. Mid-infrared laser technology and its progress[J]. Infrared and Laser Engineering, 2006, 35(S3): 188-193.

    [9] Meng Wang, Lixia Yi, Liyan Zhang, et al.. 2 μm fluorescence and Raman spectra in high and low Al(PO3)3 content fluorophosphate glasses doped with Er-Tm-Ho[J]. Chin Opt Lett, 2009, 7(11): 1035-1037.

    [10] H Tobben. Room temperature cw fibre laser at 3.5 μm in Er3+-doped ZBLAN glass[J]. Electron Lett, 1992, 28(14): 1361-1362.

    [11] Fortin V, Bernier M, Faucher D, et al.. 3.7 W fluoride glass Raman fiber laser operating at 2231 nm[J]. Opt Express, 2012, 20(17): 19412-19419.

    [12] Fortin V, Bernier M, Carrier J, et al.. Fluoride glass Raman fiber laser at 2185 nm[J]. Opt Lett, 2011, 36(21): 4152-4154.

    [13] Bernier M, Fortin V, Caron N, et al.. Mid-infrared chalcogenide glass Raman fiber laser[J]. Opt Lett, 2013, 38(2): 127-129.

    [14] Jackson S. High-power and highly efficient diode-cladding-pumped holmium-doped fluoride fiber laser operating at 2.94 μm [J]. Opt Lett, 2009, 34(15): 2327-2329.

    [15] Jackson S. Continuous wave 2.9 μm dysprosium-doped fluoride fiber laser[J]. Appl Phys Lett, 2003, 83(7): 1316-1318.

    [16] Li J, Hudson D D, Jackson S D, et al.. High-power diode-pumped fiber laser operating at 3 μm [J]. Opt Lett, 2011, 36(18): 3642-3644.

    [17] Jackson S, Sánchez G A. Chalcogenide glass Raman fiber laser[J]. Appl Phys Lett, 2006, 88(22): 221106.

    [18] Fiber Labs. ZBLAN fiber for NIR/IR spectroscopy[OL]. http://fiberlabs-inc.com/fiber_technology.htm. 2013-9-2.

    [19] Tokita S, Murakami M, Shimizu S, et al.. Liquid-cooled 24 W mid-infrared Er:ZBLAN fiber laser[J]. Opt Lett, 2009, 34(20): 3062-3064.

    [20] Tokita S, Hirokane M, Murakami M, et al.. Stable 10 W Er:ZBLAN fiber laser operating at 2.71~2.88 μm [J]. Opt Lett, 2010, 35(23): 3943-3945.

    [21] Tokita S, Murakami M, Shimizu S, et al.. 12 W Q-switched Er:ZBLAN fiber laser at 2.8 μm [J]. Opt Lett, 2011, 36(15): 2812-2814.

    [22] Wei C, Zhu X, Norwood R, et al.. Passively Q-switched 2.8 μm nanosecond fiber laser[J]. IEEE Photon Technol Lett, 2012, 24(19): 1741-1744.

    [23] Li Jianfeng, Ou Zhonghua, Dai Zhiyong, et al.. Theoretical analysis and design of mid-infrared ZBLAN fiber Raman laser [J]. Infrared and Laser Engineering, 2011, 40(8): 1432-1437.

    [24] Luo H, Li J F. Numerical modeling and optimization of mid-infrared fluoride glass Raman fiber lasers pumped by Tm3+-doped fiber laser[J]. IEEE Photonics Journal, 2011, 5(2): 2700211.

    [25] Qin G, Huang S, Feng H. Power scaling of Tm3+ doped ZBLAN blue upconversion fiber lasers modeling and experiments [J]. J Appl Phys, 2006, B(82): 65-70.

    [26] M Rini, I Cristiani, V Degiorgio. Numerical modeling and optimization of cascaded CW raman fiber lasers[J]. IEEE Quantum Electron, 2000, 36(10): 1117-1122.

    [27] Huang Jiafu, Huang Chaohong, Cai Zhiping, et al.. Numerical simulation and optimization for the bilateral pumping Pdoped Raman fiber laser[J]. Journal of Xiamen University, 2008, 47(2): 164-168.

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    Wang Ying, Luo Zhengqian, Xiong Fengfu, Cai Zhiping, Xu Huiying. Numerical Optimization of 3~5 μm Mid-Infrared ZBLAN Fiber Raman Lasers[J]. Laser & Optoelectronics Progress, 2014, 51(6): 61405
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