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车载式1 064 nm 和532 nm双波长米散射激光雷达
引用本文:毛敏娟,吴永华,戚福弟,范爱嫒,岳古明,周军.车载式1 064 nm 和532 nm双波长米散射激光雷达[J].强激光与粒子束,2005,17(5):677-680.
作者姓名:毛敏娟  吴永华  戚福弟  范爱嫒  岳古明  周军
作者单位:中国科学院 安徽光学精密机械研究所, 安徽 合肥 230031
摘    要: 新近研制的车载式双波长米散射激光雷达可用于1 064 nm 和532 nm两个波长对白天与夜晚对流层气溶胶消光系数垂直分布进行的探测。该激光雷达由激光发射单元、接收光学和后继光学单元、信号探测和采集单元以及系统运行控制单元组成,后继光路之间采用光纤导光、高低层分层探测等关键技术。该激光雷达使用1 064 nm和532 nm的两个波长,其单发脉冲能量分别为400和300 mJ,重复频率都为20 Hz,光束发散角小于0.5 mrad ;望远镜接收视场为1~3 mrad,滤光片的中心波长为1 064 nm和532 nm,带宽1 nm。分别使用R3236及H7680的PMT和VT120及Phillips777的放大器对两个波长的信号进行探测;对532 nm波长用3 A/D采集卡、1 064 nm波长用了光子计数卡。给出了双波长测量对流层气溶胶消光系数垂直分布的结果,该激光雷达可以探测10 -5~1之间的消光系数,探测高度可达10 km以上。

关 键 词:双波长米散射激光雷达  对流层  气溶胶  消光系数
文章编号:1001-4322(2005)05-0677-04
收稿时间:2004/4/13
修稿时间:2004年4月13日

Mobile dual-wavelength Mie lidar
MAO Min-juan,WU Yong-hua,QI Fu-di,FAN Ai-yuan,YUE Gu-ming,ZHOU Jun.Mobile dual-wavelength Mie lidar[J].High Power Laser and Particle Beams,2005,17(5):677-680.
Authors:MAO Min-juan  WU Yong-hua  QI Fu-di  FAN Ai-yuan  YUE Gu-ming  ZHOU Jun
Institution:Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031,China
Abstract:A mobile dual-wavelength Mie lidar(DWL) is introduced. The DWL can be used to measure the aerosol extinction coefficient profiles at 1 064 nm and 532 nm wavelength. The DWL system is composed of a transmission unit, a signal receiving unit, a signal acquiring unit and a processing control unit. Some main specifications of the DWL system are presented, which include laser with 1 064 & 532 nm wavelengths and 400 & 300 mJ pulse energy, 20 Hz repetition rate and less 0.5 mrad divergence, telescope with 1~3 mrad FOV, two different PMT R3236 & H7680 and two different amplifier VT120 & Phillips777 for 1 064& 532 nm signal detecting, filters with 1 064 & 532 nm center wavelength they have 1 nm bandwidth, even different data acquiring cards and so on. The fundamental principles and key techniques of each unit are explained. Preliminary observation shows that the DWL system is reliable to obtain vertical aerosols profiles of total troposphere, namely about 10 km in height, and to detect aerosols extinction coefficients of 10~-5 to 1.
Keywords:Dual-wavelength Mie lidar  Troposphere  Aerosol  Extinction coefficient  
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