Laser & Optoelectronics Progress, Volume. 59, Issue 15, 1516002(2022)

Recent Applications of Glass Genetic Engineering in Laser Glasses and Other Advanced Optical Glasses

Guoping Dong1、*, Tianze Wan1, Minbo Wu1, Qiwen Pan1,2, Jianrong Qiu3, and Zhongmin Yang1,2
Author Affiliations
  • 1State Key Laboratory of Luminescent Materials and Devices, Guangdong Provincial Key Laboratory of Fiber Laser Materials and Applied Techniques, School of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, Guangdong , China
  • 2School of Physics and Optoelectronics, South China University of Technology, Guangzhou 510640, Guangdong , China
  • 3College of Optical Science and Engineering, Zhejiang University, Hangzhou 310027, Zhejiang , China
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    References(128)

    [5] Wang W, Gu Q, Chen Q P et al. Investigation of PbSe quantum dot-doped glass fibers with broadband mid-infrared emission[J]. Chinese Journal of Lasers, 49, 0101013(2022).

    [7] Xu C J, Zhang J Q, Liu M et al. Midinfrared laser in Ho3+-doped ZBYA glass fiber[J]. Chinese Journal of Lasers, 49, 0101016(2022).

    [8] Zhang H, Guo H T, Xu Y T et al. Research progress in chalcogenide glass fibers for infrared laser delivery[J]. Chinese Journal of Lasers, 49, 0101007(2022).

    [9] Jiang Z H, Yang Z M. Progress on research and development of laser glass in China(invited paper)[J]. Chinese Journal of Lasers, 37, 2198-2201(2010).

    [14] Zylstra A B, Hurricane O A, Callahan D A et al. Burning plasma achieved in inertial fusion[J]. Nature, 601, 542-548(2022).

    [20] Zhang L Y, Li H, Hu L L et al. Structure modeling of genes in glass: composition-structure-property approach[J]. Journal of Inorganic Materials, 34, 885-892(2019).

    [21] Liu Z K. Basic viewpoint and prospect of material genome[J]. Chinese Science Bulletin, 58, 3618-3622(2013).

    [23] Qian G Q, Tang G W, Qian Q et al. Glass genetic engineering[J]. Scientia Sinica (Technologica), 50, 582-592(2020).

    [32] Lebedev A A. Über polymorphismus und das kühlen von glas[J]. Staatl Opt Inst Leningr., 2, 3(1921).

    [36] Dietzel A. The cation field strengths and their relation to devitrifying processes, to compound formation and to the melting points of silicates[J]. Zeitschrift für Elektrochemie und angewandte physikalische Chemie, 48, 9-23(1942).

    [47] Gupta P K. Topologically disordered networks of rigid polytopes: applications to noncrystalline solids and constrained viscous sintering[M]. Thorpe M F, Duxbury P M. Rigidity Theory and Applications, 173-190(2005).

    [50] Jiang J J[M]. Computational materials science: design practice method(2010).

    [55] Mauro J. Topological constraint theory of glass[J]. American Ceramic Society Bulletin, 90, 31-37(2011).

    [56] Zhang Q Y, Wang W C, Jiang Z H. What is the nature of glassy state?[J]. Chinese Science Bulletin, 61, 1407-1413(2016).

    [57] Jiang Z H, Hu L L. Phase diagram structure model of glass[J]. Science in China (Series E), 26, 395-404(1996).

    [58] Zhang Q Y, Jiang Z H[M]. Phase diagram model of glass structure(2020).

    [61] Fluegel A. Statistical regression modeling of glass properties: a tutorial[J]. Glass Technology, 50, 25-46(2009).

    [66] Ravinder, Venugopal V, Bishnoi S et al. Artificial intelligence and machine learning in glass science and technology: 21 challenges for the 21st century[J]. International Journal of Applied Glass Science, 12, 277-292(2021).

    [69] Xie J X, Su Y J, Xue D Z et al. Machine learning for materials research and development[J]. Acta Metallurgica Sinica, 57, 1343-1361(2021).

    [75] Li Z X, Zhang N, Xiong B et al. Materials science database in material research and development: recent applications and prospects[J]. Frontiers of Data & Computing, 2, 78-90(2020).

    [76] Eitel W, Pirani M S, Scheel K[M]. Glastechnische tabellen: physikalische und chemische Konstanten der Gläser(1932).

    [77] Levin E M[M]. Phase diagrams for ceramists(1956).

    [84] Musgraves J D, Hu J J, Calvez L[M]. Springer handbook of glass(2019).

    [85] Massobrio C, Du J C, Bernasconi M et al[M]. Molecular dynamics simulations of disordered materials(2015).

    [86] Varshneya A K, Mauro J C[M]. Fundamentals of inorganic glasses(2013).

    [91] Du J C, Cormack A N[M]. Atomistic Simulations of Glasses: Fundamentals and Applications(2022).

    [102] Liu C P, Liao L, Li J Y. Research progress on photodarkening of Yb-doped fiber lasers[J]. Laser & Optoelectronics Progress, 53, 070002(2016).

    [121] Vienne G G, Caplen J E, Dong L et al. Fabrication and characterization of Yb3+∶Er3+ phosphosilicate fibers for lasers[J]. Journal of Lightwave Technology, 16, 1990-2001(1998).

    [126] Dong H H. Study on the spectral performance of Yb3+ doped silica fiber for 1018 nm tandem-pumping technology[D](2021).

    [128] Hey A J G, Tansley S, Tolle K M[M]. The fourth paradigm: data-intensive scientific discovery(2009).

    [129] Kuhn T S[M]. The structure of scientific revolutions(1970).

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    Guoping Dong, Tianze Wan, Minbo Wu, Qiwen Pan, Jianrong Qiu, Zhongmin Yang. Recent Applications of Glass Genetic Engineering in Laser Glasses and Other Advanced Optical Glasses[J]. Laser & Optoelectronics Progress, 2022, 59(15): 1516002

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    Paper Information

    Category: Materials

    Received: May. 24, 2022

    Accepted: Jun. 15, 2022

    Published Online: Aug. 2, 2022

    The Author Email: Guoping Dong (dgp@scut.edu.cn)

    DOI:10.3788/LOP202259.1516002

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