• Infrared and Laser Engineering
  • Vol. 51, Issue 4, 20210222 (2022)
Weijie Zhou1、2, Wenqiang Ma1、2, Rao Li1、2, Geyao Chu1、2, Baoan Song1、2, Shixun Dai1、2, Tiefeng Xu1、3, and Peiqing Zhang1、2
Author Affiliations
  • 1Laboratory of Infrared Materials and Devices, Faculty of Electrical and Engineering and Computer Science, Ningbo University, Ningbo 315211, China
  • 2Key Laboratory of Photoelectric Materials and Devices of Zhejiang Province, Ningbo 315211, China
  • 3Ningbo Institute of Oceanography, Ningbo 315832, China
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    DOI: 10.3788/IRLA20210222 Cite this Article
    Weijie Zhou, Wenqiang Ma, Rao Li, Geyao Chu, Baoan Song, Shixun Dai, Tiefeng Xu, Peiqing Zhang. Femtosecond laser damage characteristics of Ge-As-Se-Te chalcogenide glass[J]. Infrared and Laser Engineering, 2022, 51(4): 20210222 Copy Citation Text show less
    References

    [1] L Zhu, D Yang, L Wang, et al. Optical and thermal stability of Ge-As-Se chalcogenide glasses for femtosecond laser writing. Optical Materials, 85, 220-225(2018).

    [2] D D Hudson, S Antipov, L Li, et al. Toward all-fiber supercontinuum spanning the mid-infrared. Optica, 4, 1163-1166(2017).

    [3] Y Wang, S Dai, G Li, et al. 1.4–7.2 μm broadband super-continuum generation in an As-S chalcogenide tapered fiber pumped in the normal dispersion regime. Optics Letters, 42, 3458-3461(2017).

    [4] J Cui, X Xiao, Y Xu, et al. Mid-infrared emissions of Dy3+ doped Ga-As-S chalcogenide glasses and fibers and their potential for a 4.2 μm fiber laser. Optical Materials Express, 8, 2089-2102(2018).

    [5] R I Woodward, D Hudson, A Fuerbach, et al. Generation of 70-fs pulses at 2.86 μm from a mid-infrared fiber laser. Optics Letters, 42, 4893-4896(2017).

    [6] Jianghui Zeng, Peiqing Zhang, Qian Zhang, et al. Dispersion compensation of chirped fiber grating in chalcogenide fiber laser. Infrared and Laser Engineering, 46, 1005007(2017).

    [7] Changgui Lin, Xiaoyong Guo, Xianfeng Wang, et al. Precision molding of As2Se3 chalcogenide glass aspheric lens. Infrared and Laser Engineering, 48, 0742002(2019).

    [8] C Yang, X Wang, J Su, et al. Spectroscopy analysis of mixed organic liquid detection with Ge20Se60Te20 glass-tapered fiber. Journal of Non-Crystalline Solids, 500, 377-381(2018).

    [9] Yichao Liu, Yao Zhou, Jianxing Zhao, et al. Surface enhanced nonlinear absorption of chalcogenide Ge28Sb12Se60 film. Infrared and Laser Engineering, 49, 20201071(2020).

    [10] W Kim, V Nguyen, L Shaw, et al. Recent progress in chalcogenide fiber technology at NRL. Journal of Non-Crystalline Solids, 431, 8-15(2016).

    [11] J Savage, P Webber, A Pitt. The potential of Ge-As-Se-Te glasses as 3–5 μm and 8–12 μm infrared optical materials. Infrared Physics, 20, 313-320(1980).

    [12] I Inagawa, R Iizuka, T Yamagishi, et al. Optical and thermal properties of chalcogenide Ge-As-Se-Te glasses for IR fibers. Journal of Non-Crystalline Solids, 95, 801-808(1987).

    [13] V Shiryaev, J L Adam. Zhang X. Calorimetric study of characteristic temperatures and crystallization behavior in Ge–As–Se–Te glass system. Journal of Physics Chemistry of Solids, 65, 1737-1744(2004).

    [14] A Velmuzhov, V Shiryaev, M Sukhanov, et al. Fiber sensor on the basis of Ge26As17Se25Te32 glass for FEWS analysis. Optical Materials, 75, 525-532(2018).

    [15] S Qi, B Zhang, C Zhai, et al. High-resolution chalcogenide fiber bundles for longwave infrared imaging. Optics Express, 25, 26160-26165(2017).

    [16] Z Zhao, B Wu, X Wang, et al. Mid‐infrared supercontinuum covering 2.0–16 μm in a low‐loss telluride single‐mode fiber. Laser Photonics Reviews, 11, 1700005(2017).

    [17] Z Yang, L Luo, W Chen. Red color GeSe2‐based chalcohalide glasses for infrared optics. Journal of the American Ceramic Society, 89, 2327-2329(2006).

    [18] S Messaddeq, R Vallée, P Soucy, et al. Self-organized periodic structures on Ge-S based chalcogenide glass induced by femtosecond laser irradiation. Optics Express, 20, 29882-29889(2012).

    [19] L Sudrie, A Couairon, M Franco, et al. Femtosecond laser-induced damage and filamentary propagation in fused silica. Phys Rev Lett, 89, 186601(2002).

    Weijie Zhou, Wenqiang Ma, Rao Li, Geyao Chu, Baoan Song, Shixun Dai, Tiefeng Xu, Peiqing Zhang. Femtosecond laser damage characteristics of Ge-As-Se-Te chalcogenide glass[J]. Infrared and Laser Engineering, 2022, 51(4): 20210222
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