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多束强激光在大气传输中的热晕与湍流效应
引用本文:刘 伟,赵 威,廖天河,张启鹏,李晓龙,张 雷.多束强激光在大气传输中的热晕与湍流效应[J].半导体光电,2013,34(3):486-489,493.
作者姓名:刘 伟  赵 威  廖天河  张启鹏  李晓龙  张 雷
作者单位:1. 洛阳电子装备试验中心,河南洛阳,471003
2. 解放军信息工程大学理学院,郑州,450001
基金项目:湖南省研究生科研创新项目(cx2009B005);国家“863”计划项目.
摘    要:强激光在非均匀光程中传输时,大气路径中分子的吸收系数不再是常数,利用内插法得出了中纬度夏季模式的分子吸收系数随海拔高度的变化规律。强激光传输会同时受到大气湍流效应和热晕效应的共同影响,这严重影响了强激光传输的效能,而采用多束强激光传输方法可以减小这些效应的影响。根据波动光学理论,建立了三束脉冲激光在湍流和热晕相互作用下的数学模型。数值结果表明:该方法对光强起伏、光斑分裂和光束扩展等现象有较好的校正效果。

关 键 词:热晕  湍流  折射率结构常数  吸收系数  数值模拟
收稿时间:2012/12/14 0:00:00

Thermal Blooming and Turbulence of the Multi-beam Laser Propagation in Atmosphere
LIU Wei,ZHAO Wei,LIAO Tianhe,ZHANG Qipeng,LI Xiaolong,ZHANG Lei.Thermal Blooming and Turbulence of the Multi-beam Laser Propagation in Atmosphere[J].Semiconductor Optoelectronics,2013,34(3):486-489,493.
Authors:LIU Wei  ZHAO Wei  LIAO Tianhe  ZHANG Qipeng  LI Xiaolong  ZHANG Lei
Affiliation:1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN;1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN;1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN;1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN;1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN;1.Luoyang Electronic Equipment Test Center, Luoyang 471003, CHN; 2.Institute of Science, Information Engineering University, Zhengzhou 450001, CHN
Abstract:Considering the variety of absorption coefficient along with different altitudes in different climates, the changing rules in summer in mid-latitude region were researched by the interpolation method. The high energy laser propagating through the atmosphere will be affected by atmosphere turbulence and thermal blooming effects. The multi-beam laser transmission can be used to reduce these effects, so the model of repetitively pulsed laser under thermal blooming and turbulence was built by four-dimensional computer code based on wave optical theory. Numerical results prove the good correction effects of this method for intensity fluctuation, spot splitting and laser beam expansion.
Keywords:thermal blooming  turbulence  refractive-index structure parameter  absorption coefficient  numerical simulation
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