Chinese Journal of Lasers, Volume. 48, Issue 13, 1306002(2021)

Dynamic Propagation Characteristics of 1.55-μm Wavelength Laser in Rain and Fog Coexisting Weather

Renjiao Yu*, Zhenhua Li**, Jiancheng Lai, Chunyong Wang, and Zhixiang Wu
Author Affiliations
  • School of Science, Nanjing University of Science & Technology, Nanjing, Jiangsu 210094, China
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    References(30)

    [3] Li S G, Nie J S, Sun X Q. Effect of atmospheric refraction and chromatic dispersion on laser transmission[J]. Chinese Journal of Quantum Electronics, 21, 679-682(2004).

    [7] Hu Z P, Feng Z C. Nonlinear effect of intense laser propagation in atmosphere[J]. Western Electronics, 1-6(1990).

    [8] Preston F W. Visibility of the landscape during rain[J]. Nature, 106, 343-344(1920).

    [9] Vasseur H, Gibbins C J. Prediction of apparent extinction for optical transmission through rain[J]. Applied Optics, 35, 7144-7150(1996).

    [10] Wei H L, Liu Q H, Song Z F et al. Extinction of infrared radiation by rain[J]. Journal of Infrared and Millimeter Waves, 16, 418-424(1997).

    [17] Zhao H B, Zheng C G. Numerical simulation of wet removal of aerosols when raindrop falling[J]. Acta Scientiae Circumstantiae, 25, 1590-1596(2005).

    [18] Yao K Y, Guo J, Fu Y F et al. Rain scavenging of aerosol particles[J]. Climatic and Environmental Research, 4, 297-302(1999).

    [19] Li S J, Jiang W A. Estimation of fog's impact on visibility[J]. Journal of Civil Aviation University of China, 28, 1-3, 8(2010).

    [21] Song Z F. Fundamentals of applied atmospheric optics: transmission of light waves in the atmosphere and remote sensing application[M], 45-56(1990).

    [23] Liao G N. Introduction to atmospheric radiation[M]. Guo C L, Zhou S J, Transl. 2nd ed, 18-29(2005).

    [24] Wang Y, Zhu B, Kang H Q et al. Theoretical and observational study on below-cloud rain scavenging of aerosol particles[J]. Journal of University of Chinese Academy of Sciences, 31, 306-313, 321(2014).

    [25] Gao G Q. Study of laser propagation and attenuation through the rain and fog environment[D], 30-35(2014).

    [27] Sheng P X, Mao J T, Li J G. Atmospheric physics[M]. 2nd ed, 78-85(2013).

    [29] Taminiau T H, Moerland R J, Segerink F B et al. λ/4 resonance of an optical monopole antenna probed by single molecule fluorescence[J]. Nano Letters, 7, 28-33(2007).

    [30] Poole L R, Venable D D, Campbell J W. Semianalytic Monte Carlo radiative transfer model for oceanographic lidar systems[J]. Applied Optics, 20, 3653-3656(1981).

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    Renjiao Yu, Zhenhua Li, Jiancheng Lai, Chunyong Wang, Zhixiang Wu. Dynamic Propagation Characteristics of 1.55-μm Wavelength Laser in Rain and Fog Coexisting Weather[J]. Chinese Journal of Lasers, 2021, 48(13): 1306002

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    Paper Information

    Category: fiber optics and optical communications

    Received: Oct. 12, 2020

    Accepted: Jan. 11, 2021

    Published Online: Jun. 15, 2021

    The Author Email: Yu Renjiao (renjiao_yu@163.com), Li Zhenhua (lizhenhua@njust.edu.cn)

    DOI:10.3788/CJL202148.1306002

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