Infrared and Laser Engineering, Volume. 51, Issue 4, 20210222(2022)

Femtosecond laser damage characteristics of Ge-As-Se-Te chalcogenide glass

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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    References(19)

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

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

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

    [4] Cui J, Xiao X, Xu Y, 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[J]. Optical Materials Express, 8, 2089-2102(2018).

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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

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    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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    Paper Information

    Category: Lasers & Laser optics

    Received: Apr. 3, 2021

    Accepted: --

    Published Online: May. 18, 2022

    The Author Email:

    DOI:10.3788/IRLA20210222

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