光学学报, 2019, 39 (8): 0832001, 网络出版: 2019-08-07  

纳秒超高斯型激光脉冲在C60分子介质中的反饱和吸收光限幅行为 下载: 892次

Reverse Saturable Absorption-Induced Optical Power Limiting Behavior of Nanosecond Hyper-Gaussian Laser Pulses in C60 Molecular Medium
作者单位
华北电力大学数理学院, 北京 102206
引用该论文

刘纪彩, 赵亚男, 张莹, 成飞. 纳秒超高斯型激光脉冲在C60分子介质中的反饱和吸收光限幅行为[J]. 光学学报, 2019, 39(8): 0832001.

Jicai Liu, Yanan Zhao, Ying Zhang, Fei Cheng. Reverse Saturable Absorption-Induced Optical Power Limiting Behavior of Nanosecond Hyper-Gaussian Laser Pulses in C60 Molecular Medium[J]. Acta Optica Sinica, 2019, 39(8): 0832001.

参考文献

[1] Mourou G A, Tajima T, Bulanov S V. Optics in the relativistic regime[J]. Reviews of Modern Physics, 2006, 78(2): 309-371.

[2] 李清源. 强激光对飞行器的毁伤效应[M]. 北京: 中国宇航出版社, 2012.

    Li QY. Damage effects of vehicles irradiated by intense lasers[M]. Beijing: China Astronautic Publishing House, 2012.

[3] He G S, Tan L S, Zheng Q D, et al. Multiphoton absorbing materials: molecular designs, characterizations, and applications[J]. Chemical Reviews, 2008, 108(4): 1245-1330.

[4] Liu J C, Guo F, Zhao Y N, et al. Optical power limiting of ultrashort hyper-Gaussian pulses in cascade three-level system[J]. Chinese Physics B, 2018, 27(10): 104209.

[5] Liu J C, Guo F, Zhao Y N, et al. Time-frequency analysis of ultrafast dynamics in cascade three-level system driven by hyper-Gaussian pulses[J]. Optics Communications, 2019, 438: 25-33.

[6] Vella J H, Goldsmith J H, Browning A T, et al. Experimental realization of a reflective optical limiter[J]. Physical Review Applied, 2016, 5(6): 064010.

[7] Yadav R K, Aneesh J, Sharma R, et al. Designing hybrids of graphene oxide and gold nanoparticles for nonlinear optical response[J]. Physical Review Applied, 2018, 9(4): 044043.

[8] Lim G K, Chen Z L, Clark J, et al. Giant broadband nonlinear optical absorption response in dispersed graphene single sheets[J]. Nature Photonics, 2011, 5(9): 554-560.

[9] Boyd RW. Nonlinear optics[M]. Massachusetts: Academic Press, 2010: 16.

[10] Sun Y P, Riggs J E. Organic and inorganic optical limiting materials. From fullerenes to nanoparticles[J]. International Reviews in Physical Chemistry, 1999, 18(1): 43-90.

[11] Liu J C, Wang C K, Gel’mukhanov F. Dynamics of multilevel molecules and pulse propagation beyond rotating wave approximation near two-photon resonance[J]. Physical Review A, 2007, 76(4): 043422.

[12] 陈玉霞, 刘军辉, 黄明举. 一种新型芴类衍生物的光谱及光限幅性能分析[J]. 光学学报, 2012, 32(2): 0216002.

    Chen Y X, Liu J H, Huang M J. Study on the spectral properties and optical limiting performance of a new fluorene derivative[J]. Acta Optica Sinica, 2012, 32(2): 0216002.

[13] 宋洪磊, 闫理贺, 司金海, 等. 基于超快光克尔效应的超短脉冲光限幅器[J]. 中国激光, 2015, 42(2): 0217002.

    Song H L, Yan L H, Si J H, et al. Optical limiter for ultrashort laser pulses based on ultrafast optical Kerr effect[J]. Chinese Journal of Lasers, 2015, 42(2): 0217002.

[14] Liu J C, Wang C K, Gel’mukhanov F. Optical limiting of short laser pulses[J]. Physical Review A, 2007, 76(5): 053804.

[15] Cocchi C, Prezzi D, Ruini A, et al. Ab initio simulation of optical limiting: the case of metal-free phthalocyanine[J]. Physical Review Letters, 2014, 112(19): 198303.

[16] Cho B, Cho M, Kim M, et al. Observation of reverse saturable absorption of an X-ray laser[J]. Physical Review Letters, 2017, 119(7): 075002.

[17] Gao Y C, Zhang X R, Li Y L, et al. Saturable absorption and reverse saturable absorption in platinum nanoparticles[J]. Optics Communications, 2005, 251(4/5/6): 429-433.

[18] Liu J C, Zhang Y Q, Chen L. Coherent control of nondegenerate two-photon absorption by femtosecond laser pulses[J]. Journal of Modern Optics, 2014, 61(10): 781-786.

[19] Liu J C, Chen L, Zhang Y Q. Identification of strong one-step two-photon absorption in a cascade three-level system[J]. Journal of Physics: Conference Series, 2014, 488(3): 032052.

[20] Gel'mukhanov F, Baev A, Macák P, et al. . Dynamics of two-photon absorption by molecules and solutions[J]. Journal of the Optical Society of America B, 2002, 19(5): 937-945.

[21] Tutt L W, Kost A. Optical limiting performance of C60 and C70 solutions[J]. Nature, 1992, 356(6366): 225-226.

[22] Ganeev R A, Ryasnyansky A I, Redkorechev V I, et al. Variations of nonlinear optical characteristics of C60 thin films at 532 nm[J]. Optics Communications, 2003, 225(1/2/3): 131-139.

[23] Ganeev R A, Boltaev G S, Tugushev R I, et al. Low- and high-order nonlinear optical characterization of C60-containing media[J]. The European Physical Journal D, 2011, 64(1): 109-114.

[24] Gavrilyuk S, Liu J C, Kamada K, et al. Optical limiting for microsecond pulses[J]. The Journal of Chemical Physics, 2009, 130(5): 054114.

[25] Sun Y P, Gavrilyuk S, Liu J C, et al. Optical limiting and pulse reshaping of picosecond pulse trains by fullerene C60[J]. Journal of Electron Spectroscopy and Related Phenomena, 2009, 174(1/2/3): 125-130.

[26] Hendow S T, Shakir S A. Recursive numerical solution for nonlinear wave propagation in fibers and cylindrically symmetric systems[J]. Applied Optics, 1986, 25(11): 1759-1764.

[27] Ebbesen T W, Tanigaki K, Kuroshima S. Excited-state properties of C60[J]. Chemical Physics Letters, 1991, 181(6): 501-504.

刘纪彩, 赵亚男, 张莹, 成飞. 纳秒超高斯型激光脉冲在C60分子介质中的反饱和吸收光限幅行为[J]. 光学学报, 2019, 39(8): 0832001. Jicai Liu, Yanan Zhao, Ying Zhang, Fei Cheng. Reverse Saturable Absorption-Induced Optical Power Limiting Behavior of Nanosecond Hyper-Gaussian Laser Pulses in C60 Molecular Medium[J]. Acta Optica Sinica, 2019, 39(8): 0832001.

引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!