大气与环境光学学报 ›› 2020, Vol. 15 ›› Issue (1): 40-47.

• ”海洋光学技术及应用“专辑 • 上一篇    下一篇

光束发射参数对蓝绿激光海洋传输特性的影响

周田华, 范婷威, 马剑, 陆婷婷, 胡谷雨, 朱小磊, 陈卫标   

  1. 中国科学院上海光学精密机械研究所空间激光信息传输与探测技术重点实验室, 上海 201800
  • 出版日期:2020-01-28 发布日期:2020-01-19

Influence of Beam Parameters on Propagation of Blue Green Laser Underwater

Influence of Beam Parameters on Propagation of Blue Green Laser Underwater   

  1. Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics 
    and Fine Mechanics, Chinese Academy of Sciences,\quad Shanghai 201800, China
  • Published:2020-01-28 Online:2020-01-19

摘要: 蓝绿激光位于海水低损耗窗口区,由于水体吸收和散射,光束在水下传输将发生时空扩展和波形畸变。基于蒙特卡罗仿真分析
了蓝绿激光海洋传输特性,特别是激光发射参数对接收光场分布的影响。提出通过调节发射端的光束发射参数,对发射光束进行
预聚焦,可在一定程度上抵消水体传输引起的光束扩散影响。分析和仿真结果表明,IB水体中,当预聚焦角度与水体小角度散射
特征值相当时,可在设计汇聚距离前形成一段光束扩散缓慢的平坦传输区域;当预聚焦角度大于小角度散射特征值的2倍时,
可在设计聚焦距离附近形成汇聚效果;预聚焦角度越大,汇聚效果越明显;水体变差时,相应有效汇聚距离变短。研究成果
为调控蓝绿激光信号在海水的传输特性提供了一种新的思路。

关键词: 蓝绿激光, 蒙特卡罗仿真, 光束预聚焦, 散射, 海洋传输特性

Abstract: The blue-green spectrum in the range of 450$\sim$550 nm is the only low loss optical window of seawater. 
Due to the absorption and scattering of water, the underwater propagation of the laser beam will 
have time-space expansion and waveform distortion. Based on Monte Carlo simulation, the propagation 
characteristics of blue-green laser in seawater have been analyzed, especially the influence of laser 
emission parameters on the distribution of receiving light field. By adjusting the beam parameters 
of the transmitter and focusing the laser beam in advance, the influence of beam diffusion caused 
by underwater transmission can be eliminated to some extent. The analysis and simulation results 
show that when the pre-focusing angle is equal to the small angle scattering eigenvalue of water, 
a flat transmission area with slow spread of laser beam can be formed in Jerlov type IB water before 
the designed focus distance. When the pre-focusing angle is greater than twice 
the scattering angle 
of water, the convergence effect can be formed near the designed focus distance, and the focus effect 
is proportional to the pre-focusing angle. When the water quality becomes worse, the corresponding 
effective focus distance becomes shorter. The research results provide a new way to improve the 
transmission characteristics of blue-green laser signal in seawater. 

Key words: blue-green laser, Monte Carlo simulation, beam pre-focusing, scattering, ocean propagation characteristics

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