Journal of the Chinese Ceramic Society, Volume. 50, Issue 4, 950(2022)

Sulfide Glass Fiber for High-Power Mid-Infrared Laser Transmission

QI Sisheng1,2、*, LI Sensen3, HU Hongbin4, LI Yuebing2, HUANG Zixuan2, REN He1, FENG Xian2, and YANG Zhiyong1,2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
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    References(21)

    [1] [1] JUNG D, BANK S, LEE M L, et al. Next generation mid-infrared sources[J]. J Opt, 2017, 19(12): 123001.

    [2] [2] JACKSON S D, JAIN R K. Fiber-based sources of coherent MIR radiation: Key advances and future prospects[J]. Opt Express, 2020, 28(21): 30964-31019.

    [4] [4] ANDERSON B M, SOLOMON J, FLORES A.1.1 kW, beam- combinable thulium doped all-fiber amplifier[J]. Proc SPIE, 2021, 11665: 116650B.

    [5] [5] ZERVAS M N, CODEMARD. High power fiber lasers: A review[J]. IEEE J Sel Top Quant, 2014, 20(5): 219-241.

    [6] [6] MOSKALEV I, MIROV S, MIROV M. 140 W Cr:ZnSe laser system [J]. Opt Express, 2016, 24(18): 21090-21104.

    [7] [7] MEYER J R, BEWLEY W W, CANEDY C L, et al. The interband cascade laser[J]. Photonics, 2020, 7(3): 75.

    [11] [11] UEHARA H, KONISHI D, GOYA K, et al. Power scalable 30-W mid-infrared fluoride fiber amplifier[J]. Opt Lett, 2019, 44(19) 4777-4780.

    [12] [12] SINCORE A, COOK J, TAN F, et al. High power single-mode delivery of mid-infrared sources through chalcogenide fiber[J]. Opt Express, 2018, 26(6): 7313-7323.

    [13] [13] YANG L Y, LI Y, ZHANG B, et al. 30-W supercontinuum generation based on ZBLAN fiber in an all-fiber configuration[J]. Photon Res, 2019, 7(9): 1061-1065.

    [14] [14] CHURBANNOV M F, SNOPATIN G E, SHIRYAEV V S, et al. Recent advances in preparation of high-purity glasses based on arsenic chalcogenides for fiber optics[J]. J Non-Cryst Solids, 2011, 357: 2352-2357.

    [17] [17] SATO S, IGARASHI K, TANIWAKI M, et al. Multihundred-Watt CO laser power delivery through chalcogenide glass fibers[J]. Appl Phys Lett, 1993, 62(7): 669-671.

    [18] [18] ZHANG B, GUO W, YU Y, et al. Low loss, high NA chalcogenide glass fibers for broadband mid-Infrared supercontinuum generation[J]. J Am Ceram Soc, 2015, 98(5): 1389-1392.

    [19] [19] WANG Y W, QI S S, YANG Z Y, et al. Composition dependences of refractive index and thermo-optic coefficient in Ge-As-Se chalcogenide glasses[J]. J Non-Cryst Solids, 2017, 459: 88-93.

    [20] [20] KAMERDKY V A, SCRIPACHEV I V, SNOPATIN G E, et al. High- power As-S glass fiber delivery instrument for pulse YAG:Er laser radiation[J]. Appl Opt, 1998, 37: 5596-5599.

    [21] [21] SNOPATIN G E, SHIRYAEV V S, PLOTNICHENKO V G, et al. High-purity chalcogenide glasses for fiber optics[J]. Inorg Mater, 2009, 45(13): 1439-1460.

    [22] [22] KETKOVA A, CHURBANOV M F. Heterophase inclusions as a source of non-selective optical losses in high-purity chalcogenide and tellurite glasses for fiber optics[J]. J Non-Cryst Solids, 2018, 480: 18-22.

    [23] [23] LIMPERT J, SCHREIBER T, LIEM A, et al. Thermo-optical properties of air-clad photonic crystal fiber lasers in high power operation[J]. Opt Express, 2003, 11(22): 2982-2990.

    [24] [24] SINCORE A, COOK J, TAN F, et al. Practical limits of power transmission through single-mode chalcogenide fibers[J]. Opt Eng, 2018, 57(11): 111807.

    [25] [25] INCROPERA F P, DEWITT D P. Fundamentals of Heat and Mass Transfer (6th Edition)[M]. New York: John Wiley & Sons, 2006: 8.

    [26] [26] ZINTZEN B, LANGER T, GEIGER J, et al. Heat transport in solid and air-clad fibers for high-power fiber lasers[J]. Opt Express, 2007, 15(25): 16787-16793.

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    QI Sisheng, LI Sensen, HU Hongbin, LI Yuebing, HUANG Zixuan, REN He, FENG Xian, YANG Zhiyong. Sulfide Glass Fiber for High-Power Mid-Infrared Laser Transmission[J]. Journal of the Chinese Ceramic Society, 2022, 50(4): 950

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    Paper Information

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    Received: Dec. 18, 2021

    Accepted: --

    Published Online: Nov. 13, 2022

    The Author Email: Sisheng QI (qisisheng@siom.ac.cn)

    DOI:10.14062/j.issn.0454-5648.20211110

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