激光与光电子学进展, 2018, 55 (8): 080003, 网络出版: 2018-08-13   

硫系玻璃三阶光学非线性的研究进展 下载: 802次

Research Progress of Chalcogenide Glasses with Third-Order Optical Nonlinearity
作者单位
1 扬州大学广陵学院, 江苏 扬州 225100
2 宁波大学高等技术研究院红外材料及器件实验室, 浙江 宁波 315211
摘要
硫系玻璃具有超高的非线性极化率和超短的非线性响应时间,良好的热稳定性、化学稳定性以及易成纤成膜的特性使之成为优良的红外光学材料,在红外光子学领域受到了广泛的关注。从玻璃组分、微晶化处理、光辐照三方面综述了硫系玻璃三阶光学非线性方面的最新研究进展,并对现有硫系玻璃的三阶非线性研究现状进行总结与展望。
Abstract
Chalcogenide glasses have ultra-high nonlinear polarizability and ultra-short nonlinear response time. Because of excellent thermal stability, chemical stability, and fiber forming properties, chalcogenide glasses have attracted extensive attention in the field of infrared photonics. In this paper, the latest research progress of the third-order optical nonlinear properties of chalcogenide glasses is reviewed in terms of glass composition, microcrystalline treatment, and light irradiation. The current research status of the third-order optical nonlinear properties of chalcogenide glasses is summarized and prospected.
参考文献

[1] Tikhomirov V K, Tikhomirova S A. On the mechanism of non-linear optical attenuation at 1.3-1.5 μm in arsenic sulfide and tellurium oxide glasses[J]. Journal of Non-Crystalline Solids, 2001, 284: 193-197.

[2] Zakery A, Elliott S R. Optical properties and applications of chalcogenide glasses: a review[J]. Journal of Non-Crystalline Solids, 2003, 330(1): 1-12.

[3] 成俊雯, 陈飞飞, 戴世勋, 等. 纳米银颗粒掺杂铋酸盐玻璃的光谱与三阶非线性光学特性研究[J]. 光谱学与光谱分析, 2013, 33(6): 1642-1646.

    Cheng J W, Chen F F, Dai S X, et al. Study on spectroscopy and third-order optical nonlinear characteristics of Ag-nanoparticles embedded bismuthate glass[J]. Spectroscopy & Spectral Analysis, 2013, 33(6): 1642-1646.

[4] 成俊雯, 陈飞飞, 戴世勋, 等. Bi2O3-B2O3二元系统玻璃的网络结构形成与光学性能研究[J]. 硅酸盐学报, 2013, 41(4): 475-479.

    Cheng J W, Chen F F, Dai S X, et al. Vitreous network formation and optical characteristics of glasses within Bi2O3-B2O3 binary system[J]. Journal of the Chinese Ceramic Society, 2013, 41(4): 475-479.

[5] Stronski A, Paiuk O, Gudymenko A, et al. Effect of doping by transitional elements on properties of chalcogenide glasses[J]. Ceramics International, 2015, 41(6): 7543-7548.

[6] 刘自军, 卞俊轶, 黄炎, 等. 稀土掺杂硫系光纤中红外发光的研究进展[J]. 激光与光电子学进展, 2017, 54(2): 020003.

    Liu Z J, Bian J Y, Huang Y, et al. Research progress on rare earth ions doped chalcogenide fiber for mid-infrared luminescence[J]. Laser & Optoelectronics Progress, 2017, 54(2): 020003.

[7] 孙礼红, 王训四, 祝清德, 等. 高非线性硫系玻璃开发及其理论研究进展[J]. 激光与光电子学进展, 2016, 53(2): 020001.

    Sun L H, Wang X S, Zhu Q D, et al. Advance on the exploration and evaluation of highly nonlinear chalcogenide glasses[J]. Laser & Optoelectronics Progress, 2016, 53(2): 020001.

[8] 施纯峥, 廖延彪, 赖淑蓉. 硫系光纤的非线性特性及其在全光开关上的应用[J]. 激光杂志, 2001, 22(5): 1-4.

    Shi C Z, Liao Y B, Liao S R. Nonlinear properties of chalcogenide fibers and their application to all-optical switching[J]. Laser Journal, 2001, 22(5): 1-4.

[9] 王学锋, 赵修建, 薛建强, 等. 三阶非线性光学玻璃研究进展[J]. 材料导报, 2003, 17(1): 27-29.

    Wang X F, Zhao X J, Xue J Q, et al. Research progress in third-order nonlinear optical glasses[J]. Materials Review, 2003, 17(1): 27-29.

[10] 陈飞飞, 戴世勋, 徐铁峰, 等. 非谐振型光学玻璃的三阶非线性的研究进展[J]. 武汉理工大学学报, 2007, 29(e1): 5-11.

    Chen F F, Dai S X, Xu T F, et al. Research progress in third-order nonlinear properties of nonresonant-type optical glasses[J]. Journal of Wuhan University of Technology, 2007, 29(e1): 5-11.

[11] Quémard C, Smektala F, Couderc V, et al. Chalcogenide glasses with high nonlinear optical properties for telecommunications[J]. Journal of Physics and Chemistry of Solids, 2001, 62(8): 1435-1440.

[12] 顾少轩, 马志军, 赵修建. GeS2-Ga2S3-CdS玻璃的折射率与三阶非线性光学性能[J]. 硅酸盐学报, 2006, 34(11): 1311-1314.

    Gu S X, Ma Z J, Zhao X J. Refractive index and third-order nonliner optical properties of GeS2-Ga2S3-CdS glasses[J]. Journal of the Chinese Ceramic Society, 2006, 34(11): 1311-1314.

[13] 刘硕, 唐俊州, 刘自军, 等. 低损耗硫系玻璃光纤的挤压制备及其性能研究[J]. 光学学报, 2016, 36(10): 1006002.

    Liu S, Tang J Z, Liu Z J, et al. Fabrication and properties of low-loss chalcogenide optical fiber based on the extrusion method[J]. Acta Optica Sinica, 2016, 36(10): 1006002.

[14] Kobayashi H, Kanbara H, Koga M, et al. Third-order nonlinear optical properties of As2S3 chalcogenide glass[J]. Journal of Applied Physics, 1993, 74(6): 3683-3687.

[15] Smektala F, Quemard C, Leneindre L, et al. Chalcogenide glasses with large non-linear refractive indices[J]. Journal of Non-Crystalline Solids, 1998, 239: 139-142.

[16] Kanbara H, Fujiwara S, Tanaka K, et al. Third-order nonlinear optical properties of chalcogenide glasses[J]. Applied Physics Letters, 1997, 70(8): 925-927.

[17] Cardinal T, Richardson K A, Shim H, et al. Non-linear optical properties of chalcogenide glasses in the system As-S-Se[J]. Journal of Non-Crystalline Solids, 1999, 256: 353-360.

[18] Harbold J M, Ilday F O, Wise F W, et al. Highly nonlinear As-S-Se glasses for all-optical switching[J]. Optics Letters, 2002, 27(2): 119-121.

[19] Barney E R, Abdel-Moneim N S, Towey J J, et al. Correlating structure with non-linear optical properties in xAs40Se60·(1-x)As40S60 glasses[J]. Physical Chemistry Chemical Physics, 2015, 17(9): 6314-6327.

[20] Ogusu K, Yamasaki J, Maeda S, et al. Linear and nonlinear optical properties of Ag-As-Se chalcogenide glasses for all-optical switching[J]. Optics Letters, 2004, 29(3): 265-267.

[21] Ogusu K, Shinkawa K. Optical nonlinearities in As2Se3 chalcogenide glasses doped with Cu and Ag for pulse durations on the order of nanoseconds[J]. Optics Express, 2009, 17(10): 8165-8172.

[22] Gopinath J T, Soljacic M, Ippen E P, et al. Third order nonlinearities in Ge-As-Se-based glasses for telecommunications applications[J]. Journal of Applied Physics, 2004, 96(11): 6931-6933.

[23] Smektala F, Quemard C, Couderc V, et al. Non-linear optical properties of chalcogenide glasses measured by Z-scan[J]. Journal of Non-Crystalline Solids, 2000, 274: 232-237.

[24] Boudebs C, Berlatier W, Cherukulappurath S, et al. Nonlinear optical properties of chalcogenide glasses at telecommunication wavelength using nonlinear imaging technique[C]∥Proceedings of 2004 6th International Conference on Transparent Optical Networks, 2004: 145-150.

[25] Petit L, Carlie N, Richardson K, et al. Nonlinear optical properties of glasses in the system Ge/Ga-Sb-S/Se[J]. Optics Letters, 2006, 31(10): 1495-1497.

[26] Petit L, Carlie N, Humeau A, et al. Correlation between the nonlinear refractive index and structure of germanium-based chalcogenide glasses[J]. Materials Research Bulletin, 2007, 42(12): 2107-2116.

[27] Petit L, Carlie N, Chen H, et al. Compositional dependence of the nonlinear refractive index of new germanium-based chalcogenide glasses[J]. Journal of Solid State Chemistry, 2009, 182(10): 2756-2761.

[28] Chu S S, Li F M, Tao H Z, et al. SbS3 enhanced ultrafast third-order optical nonlinearities of Ge-S chalcogenide glasses at 820 nm[J]. Optical Materials, 2008, 31(2): 193-195.

[29] Sharma N, Sharda S, Katyal S C, et al. Effect of Te on linear and non-linear optical properties of new quaternary Ge-Se-Sb-Te chalcogenide glasses[J]. Electronic Materials Letters, 2014, 10(1): 101-106.

[30] Chen L Y, Chen F F, Dai S X, et al. Third-order nonlinearity in Ge-Sb-Se glasses at mid-infrared wavelengths[J]. Materials Research Bulletin, 2015, 70: 204-208.

[31] Yang A P, Zhang M J, Li L, et al. Ga-Sb-S chalcogenide glasses for mid-infrared applications[J]. Journal of the American Ceramic Society, 2016, 99(1): 12-15.

[32] Qiao B J, Dai S X, Xu Y S, et al. Third-order optical nonlinearities of chalcogenide glasses within Ge-Sn-Se ternary system at a mid-infrared window[J]. Optical Materials Express, 2015, 5(10): 2359-2365.

[33] Qiao B J, Chen F F, Huang Y C, et al. Investigation of mid-infrared optical nonlinearity of Ge20SnxSe80-x ternary chalcogenide glasses[J]. Materials Letters, 2016, 162: 17-19.

[34] Huang Y, Chen F, Lin R, et al. Glass formation and mid-infrared optical nonlinearities of chalcogenide glasses in germanium-tin-sulfur ternary system[J]. Optical Materials Express, 2016, 6(10): 3053-3062.

[35] Hou Y A, Liu Q M, Zhou H, et al. Ultrafast non-resonant third-order optical nonlinearity of GeS-GaS-CdS chalcogenide glass[J]. Solid State Communications, 2010, 150(17/18): 875-878.

[36] Wang X F, Wang Z W, Yu J G, et al. Large and ultrafast third-order optical nonlinearity of GeS2-Ga2S3-CdS chalcogenide glass[J]. Chemical Physics Letters, 2004, 399: 230-233.

[37] Dong G P, Tao H Z, Chu S S, et al. Study on the structure dependent ultrafast third-order optical nonlinearity of GeS2-In2S3 chalcogenide glasses[J]. Optics Communications, 2007, 270(2): 373-378.

[38] Qu G S, Lin C G, Li Z B, et al. Glass formation and physical properties of chalcogenide glasses in Ge-S-Pb system[J]. Infrared Physics & Technology, 2014, 63: 184-188.

[39] Ren J, Li B, Wagner T, et al. Third-order optical nonlinearities of silver doped and/or silver-halide modified Ge-Ga-S glasses[J]. Optical Materials, 2014, 36(5): 911-915.

[40] Chen F F, Yu Q S, Qiao B J, et al. Investigations of structure and nonlinear optical properties of gold doped germanium-gallium-sulfur chalcogenide glasses[J]. Journal of Non-Crystalline Solids, 2015, 412: 30-34.

[41] Zhang X Y, Chen F F, Lin R Q, et al. Investigation of third-order optical nonlinearities of copper doped germanium-gallium-sulfur chalcogenide glasses[J]. Journal of Non-Crystalline Solids, 2017, 475: 167-171.

[42] Tao H Z, Dong G P, Zhai Y B, et al. Femtosecond third-order optical nonlinearity of the GeS2-Ga2S3-CdI2 new chalcohalide glasses[J]. Solid State Communications, 2006, 138(10/11): 485-488.

[43] Mao S, Tao H Z, Zhao X, et al. Structure dependence of ultrafast third-order optical nonlinearity for GeS2-In2S3-CsI chalcohalide glasses[J]. Solid State Communications, 2007, 142(8): 453-456.

[44] Xu Y S, Zhang Q M, Wang W, et al. Large optical Kerr effect in bulk GeSe2-In2Se3-CsI chalcohalide glasses[J]. Chemical Physics Letters, 2008, 462: 69-71.

[45] Fedus K, Boudebs G, Coulombier Q, et al. Nonlinear characterization of GeS2-Sb2S3-CsI glass system[J]. Journal of Applied Physics, 2010, 107(2): 023108.

[46] Zhang M J, Yang Z Y, Zhao H, et al. Glass forming and properties of Ga2S3-Sb2S3-CsCl chalcohalide system[J]. Journal of Alloys and Compounds, 2017, 722: 166-172.

[47] Zhou Z H, Hashimoto T, Nasu H, et al. Two-photon absorption and nonlinear refraction of lanthanum sulfide-gallium sulfide glasses[J]. Journal of Applied Physics, 1998, 84(5): 2380-2384.

[48] Requejo-Isidro J, Mairaj A K, Pruneri V, et al. Self refractive non-linearities in chalcogenide based glasses[J]. Journal of Non-Crystalline Solids, 2003, 317(3): 241-246.

[49] Sun L H, Chen F F, Xu Y S, et al. Investigation of the third-order nonlinear property of Ge-Se-Te glasses at mid-infrared[J]. Applied Physics A, 2016, 122(9): 1-6.

[50] Lin C G, Calvez L, Ying L, et al. External influence on third-order optical nonlinearity of transparent chalcogenide glass-ceramics[J]. Applied Physics A, 2011, 104(2): 615-620.

[51] Chen F F, Dai S X, Lin C G, et al. Performance improvement of transparent germanium-gallium-sulfur glass ceramic by gold doping for third-order optical nonlinearities[J]. Optics Express, 2013, 21(21): 24847-24855.

[52] Huang Y C, Chen F F, Qiao B J, et al. Improved nonlinear optical properties of chalcogenide glasses in Ge-Sn-Se ternary system by thermal treatment[J]. Optical Materials Express, 2016, 6(5): 1644-1652.

[53] Xiang H, Wang S F, Wang Z W, et al. Laser irradiation induced enhancement on the ultrafast third-order optical nonlinearity of chalcogenide glass[J]. Optical Materials, 2006, 28(8/9): 1020-1024.

[54] Zhang Q M, Liu W, Liu L Y, et al. Large and opposite changes of the third-order optical nonlinearities of chalcogenide glasses by femtosecond and continuous-wave laser irradiation[J]. Applied Physics Letters, 2007, 91(18): 181917.

于秋爽, 张潇予, 张志萍. 硫系玻璃三阶光学非线性的研究进展[J]. 激光与光电子学进展, 2018, 55(8): 080003. Yu Qiushuang, Zhang Xiaoyu, Zhang Zhiping. Research Progress of Chalcogenide Glasses with Third-Order Optical Nonlinearity[J]. Laser & Optoelectronics Progress, 2018, 55(8): 080003.

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