• Journal of the Chinese Ceramic Society
  • Vol. 50, Issue 4, 943 (2022)
WANG Yuze1,2,*, WANG Jun1,2, JIAO Kai1,2, LIANG Xiaolin1,2..., SUN Weilu1,2, BAI Shengchuang1,2, ZHAO Zheming3, DAI Shixun1,2 and WANG Xunsi1,2|Show fewer author(s)
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    DOI: 10.14062/j.issn.0454-5648.20211026 Cite this Article
    WANG Yuze, WANG Jun, JIAO Kai, LIANG Xiaolin, SUN Weilu, BAI Shengchuang, ZHAO Zheming, DAI Shixun, WANG Xunsi. Effect of Trace-Oxide on H-Se Impurity in Se-Based Chalcogenide Glasses[J]. Journal of the Chinese Ceramic Society, 2022, 50(4): 943 Copy Citation Text show less
    References

    [2] ABE K, TAKEBE H, MORINAGA K. Preparation and properties of Ge-Ga-S glasses for laser hosts[J]. J Non-Cryst Solids, 1997, 212(2/3): 143-150.

    [3] SHIRYAEV V S, VELMUZHOV A P, TANG Z Q, et al. Preparation of high purity glasses in the Ga-Ge-As-Se system[J]. Opt Mater, 2014, 37: 18-23.

    [4] KARAKSINA E V, SHIRYAEV V S, KOTEREVA T V, et al. Preparation of high-purity Pr3+ doped Ge-Ga-Sb-Se glasses with intensive middle infrared luminescence[J]. J Lumin, 2016, 170: 37-41.

    [5] KARAKSINA E V, SHIRYAEV V S, CHURBANOV M F, et al. Core-clad Pr3+-doped Ga(In)-Ge-As-Se-(I) glass fibers: Preparation, investigation, simulation of laser characteristics[J]. Opt Mater, 2017, 72: 654-660.

    [6] KARAKSINA E V, KOTEREVA T V, SHIRYAEV V S. Luminescence properties of core-clad Pr-doped Ge-As-Se-Ga(In, I) glass fibers[J]. J Lumin, 2018, 204: 154-156.

    [7] SILVA O B, RIVERA V A G, LEDEMI Y, et al. Germanium concentration effects on the visible emission properties of Er3+ in tellurite glasses[J]. J Lumin, 2021, 232(4301): 117808.

    [8] SLUSHER R E, LENZ G, HODELIN J, et al. Large Raman gain and nonlinear phase shifts in high-purity As2Se3 chalcogenide fibers[J]. J Opt Soc Am B, 2004, 21(6): 1146-1155.

    [9] PATRICK H, FRDRIC S, VINCENT C, et al. Selenide glass single mode optical fiber for nonlinear optics[J]. Opt Mater, 2007, 29(6): 651-656.

    [10] VELMUZHOV A P, SUKHANOV M V, PLOTNICHENKO V G, et al. Preparation of REE-doped Ge-based chalcogenide glasses with low hydrogen impurity content[J]. J Non-Cryst Solids, 2019, 525: 119669.

    [12] XUE Z, LIU S, ZHAO Z, et al. Infrared suspended-core fiber fabrication based on stacked chalcogenide glass extrusion[J]. J Lightwave Technol, 2018, 36(12): 2416-2421.

    [13] CHURBANOV M F, VELMUZHOV A P, SUKHANOV M V, et al. Arsenic-sulfide glasses with low content of hydrogen impurity for fiber optics[J]. Opt Mater, 2018, 77: 87-92.

    [14] VELMUZHOV A P, SUKHANOV M V, ZERNOVA N S, et al. Preparation of Ge20Se80 glasses with low hydrogen and oxygen impurities content for middle IR fiber optics[J]. J Non-Cryst Solids, 2019, 521: 119505.

    [15] KING W A, CLARE A G, LACOURSE W C. Laboratory preparation of highly pure As2Se3 glass[J]. J Non-Cryst Solids, 1995, 181(3): 231-237.

    [16] GUILLEVIC E, ZHANG X, ADAM J-L, et al. Fabrication of highly homogeneous As2Se3 glass under argon flow[J]. J Non-Cryst Solids, 2011, 357(15): 2897-2902.

    [17] TROLES J, SHIRYAEV V, CHURBANOV M, et al. GeSe4 glass fibres with low optical losses in the mid-IR[J]. Opt Mater, 2009, 32(1): 212-215.

    [18] KURGANOVA A E, SNOPATIN G E, CHURBANOV M F. Purification of glass melts in the As-Se system with vacuum distillation[J]. Glass Phys Chem, 2012, 38(3): 300-306.

    [19] NGUYEN V Q, SANGHERA J S, PUREZA P, et al. Fabrication of arsenic selenide optical fiber with low hydrogen impurities[J]. J Am Ceram Soc, 2004, 85(11): 2849-2851.

    [20] MENEGHETTI M, CAILLAUD C, CHAHAL R, et al. Purification of Ge-As-Se ternary glasses for the development of high quality microstructured optical fibers[J]. J Non-Cryst Solids, 2019, 503-504: 84-88.

    [21] DIMITRIJ TZNU. JITKA PEDLROV J G R V. The preparation of chalcogenide glasses in chlorine reactive atmosphere[J]. J Non-Cryst Solids, 1996, 40(2): 55-59.

    [22] MOYNIHAN C T, MACEDO P B, MAKLAD M S, et al. Intrinsic and impurity infrared absorption in As2Se3 glass[J]. J Non-Cryst Solids, 1975, 17(3): 369-385.

    [23] VELMUZHOV А P, SUKHANOV М V, SHIRYAEV V S, et al. Preparation of especially pure Ge-Se glasses via germanium monoselenide for Mid-IR fiber optics[J]. Opt Mater, 2018, 84: 888-892.

    [24] VOIGT B, DRESLER G. Microheterogeneities in infrared optical selenide glasses[J]. J Non-Cryst Solids, 1983, 58(1): 41-45.

    [25] NGUYEN V Q, DRAKE G, VILLALOBOS G, et al. Effect of aluminum and tellurium tetrachloride addition on the loss of arsenic

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

    [27] CHURBANOV 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(11-13): 2352-2357.

    WANG Yuze, WANG Jun, JIAO Kai, LIANG Xiaolin, SUN Weilu, BAI Shengchuang, ZHAO Zheming, DAI Shixun, WANG Xunsi. Effect of Trace-Oxide on H-Se Impurity in Se-Based Chalcogenide Glasses[J]. Journal of the Chinese Ceramic Society, 2022, 50(4): 943
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