Bulletin of the Chinese Ceramic Society, Volume. 41, Issue 11, 3756(2022)
Exploration of Chalcogenide Glass Fiber Preparation Method Based on Pulse Injection Technology
[1] [1] SNOPATIN G E, SHIRYAEV V S, PLOTNICHENKO V G, et al. Highpurity chalcogenide glasses for fiber optics[J]. Inorganic Materials, 2009, 45(13): 14391460.
[2] [2] ADAM J L, ZHANG X. Chalcogenide glasses: preparation, properties and applications[M]. Cambridge: Woodhead Publishing, 2014.
[3] [3] SANGHERA J S, AGGARWAL I D. Active and passive chalcogenide glass optical fibers for IR applications: a review[J]. Journal of NonCrystalline Solids, 1999, 256/257: 616.
[6] [6] ZAKERY A, ELLIOT S R. Optical nonlinearities in chalcogenide glasses and their applications[M]. Berlin: Springer Berlin Heidelberg, 2007.
[7] [7] ZAKERY A, ELLIOTT S R. Optical properties and applications of chalcogenide glasses: a review[J]. Journal of NonCrystalline Solids, 2003, 330(1/2/3): 112.
[8] [8] ASOBE M. Nonlinear optical properties of chalcogenide glass fibers and their application to alloptical switching[J]. Optical Fiber Technology, 1997, 3(2): 142148.
[10] [10] SHIRYAEV V S, CHURBANOV M F. Trends and prospects for development of chalcogenide fibers for midinfrared transmission[J]. Journal of NonCrystalline Solids, 2013, 377: 225230.
[12] [12] SANGHERA J S, AGGARWAL I D. Infrared fiber optics[M]. Boca Raton: CRC Press, 1998.
[13] [13] CHURBANOV M F. Highpurity chalcogenide glasses as materials for fiber optics[J]. Journal of NonCrystalline Solids, 1995, 184: 2529.
[14] [14] DEVYATYKH G G, DIANOV E M, PLOTNICHENKO V G, et al. Fiber waveguides based on highpurity chalcogenide glasses[J]. HighPurity Substances, 1991, 5: 127.
[15] [15] KETKOVA L A, CHURBANOV M F. Heterophase inclusions as a source of nonselective optical losses in highpurity chalcogenide and tellurite glasses for fiber optics[J]. Journal of NonCrystalline Solids, 2018, 480: 1822.
[16] [16] CHURBANOV M F, PLOTNICHENKO V G. Optical fibers from highpurity arsenic chalcogenide glasses[J]. Semiconductors and Semimetals, 2004, 80: 209230.
[17] [17] SHIRYAEV V S, CHURBANOV M F. Recent advances in preparation of highpurity chalcogenide glasses for midIR photonics[J]. Journal of NonCrystalline Solids, 2017, 475: 19.
[18] [18] NGUYEN V Q, SANGHERA J S, COLE B, et al. Fabrication of arsenic sulfide optical fiber with low hydrogen impurities[J]. Journal of the American Ceramic Society, 2002, 85: 20562058.
[20] [20] SHIRYAEV V S, MISHINOV S V, CHURBANOV M F. Investigation of adhesion of chalcogenide glasses to silica glass[J]. Journal of NonCrystalline Solids, 2015, 408: 7175.
[21] [21] MISHINOV S, CHURBANOV M, GOROKHOV A N, et al. Adhesion mechanism of destruction of silicaglass surface during the preparation and treatment of optical glassy arsenic chalcogenides[J]. Inorganic Materials, 2016, 52: 716720.
[22] [22] WU Z H, XU Y S, QI D F, et al. Progress in preparation and applications of TeAsSe chalcogenide glasses and fibers[J]. Infrared Physics & Technology, 2019, 102: 102981.
[23] [23] MASUDA S, TAKAGI K, DONG W, et al. Solidification behavior of falling germanium droplets produced by pulsated orifice ejection method[J]. Journal of Crystal Growth, 2008, 310(11): 29152922.
[24] [24] LI C, LI J Q, HU Y Y, et al. Preparation and solidification process of monosized CuNiSn microspheres by pulsated orifice ejection method[J]. Materials Research Express, 2019, 6(5): 056517.
[25] [25] GUO Y C, LI C, DENG N, et al. Preparation of high sphericity monodisperse aluminum microspheres by pulsated orifice ejection method[J]. Materials Today Communications, 2022, 30: 103110.
Get Citation
Copy Citation Text
GUO Yongchang, LI Can, FENG Shaowei, TAO Haizheng, WANG Hui, LI Jianqiang. Exploration of Chalcogenide Glass Fiber Preparation Method Based on Pulse Injection Technology[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(11): 3756
Category:
Received: Aug. 16, 2022
Accepted: --
Published Online: Dec. 26, 2022
The Author Email: Yongchang GUO (guoyongchang18@mails.ucas.ac.cn)
CSTR:32186.14.