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非线性拉曼激光雷达系统检测CO2气体的受激拉曼过程
引用本文:赵曰峰,张寅超,洪光烈,刘小勤,曹开法,方欣,赵培涛,刘玉丽.非线性拉曼激光雷达系统检测CO2气体的受激拉曼过程[J].强激光与粒子束,2005,17(12):1778-1782.
作者姓名:赵曰峰  张寅超  洪光烈  刘小勤  曹开法  方欣  赵培涛  刘玉丽
作者单位:中国科学院 安徽光学精密机械研究所 国家863计划大气光学重点实验室, 安徽 合肥 230031
基金项目:Foundation item:National 863 Program Project
摘    要: 利用气体的受激拉曼散射增益效应的非线性雷达技术是探测大气中的CO2气体的重要方法,用Nd:YAG固体激光器(1 064 nm)的三倍频光(354.7 nm)注入装有CO2和N2高压气体的拉曼管中,气体的受激拉曼散射(SRS)过程产生两种气体的一阶斯托克斯光,用来作为拉曼雷达的发射种子光源。介绍了产生光源的实验装置,论述了SRS中气体气压变化与一阶斯托克斯光能量输出变化的定量关系,得到最佳能量输出的优化条件,并对SRS中一阶斯托克斯光产生过程的物理机制进行了讨论。并根据光源的试验结果,设计了非线性受激拉曼雷达系统,对前期的普通拉曼雷达进行了实验,得到了初步的实验结果。

关 键 词:非线性拉曼激光雷达  大气二氧化碳  受激拉曼散射过程
文章编号:1001-4322(2005)12-1778-05
收稿时间:2005-04-13
修稿时间:2005-08-18

Stimulated Raman scattering process for nonlinear Raman lidar monitoring atmospheric carbon dioxide
ZHAO Yue-feng,ZHANG Yin-chao,HONG Guang-lie,LIU Xiao-qin,CAO Kai-fa,FANG Xin,ZHAO Pei-tao,LIU Yu-li.Stimulated Raman scattering process for nonlinear Raman lidar monitoring atmospheric carbon dioxide[J].High Power Laser and Particle Beams,2005,17(12):1778-1782.
Authors:ZHAO Yue-feng  ZHANG Yin-chao  HONG Guang-lie  LIU Xiao-qin  CAO Kai-fa  FANG Xin  ZHAO Pei-tao  LIU Yu-li
Institution:Atmospheric Optics Laboratory, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, P.O.Box 1125, Hefei 230031, China
Abstract:The lidar technique based on sti mulated Raman scattering (SRS) process has been extensivelyused in monitoring trace gas concentrations inthe at mosphere .To monitor the at mospheric CO2concentration,anonlinear Raman lidar based on the SRS process was devised . Athird harmonic Nd :YAGlaser wave (354 .7nm) was injectedinto the Raman cells filled with high-pressure gases ,CO2and N2.The first order Stokes lights371 .66 nm(CO2) and 386 .7 nm(N2) were generated by the sti mulated Raman scattering process .The energy ofthe first order Stokes lights was measured by changing the gas pressureinthe Raman cell and the Nd :YAGlasersystemoutput energy . The opti mumpressures of CO2and N2in the Raman cell were achieved , which were 0 .8MPa and 3 .5 MPa respectively . The principles of this physics process were also discussed .
Keywords:Nonlinear Raman lidar  Atmospheric CO2  SRS process
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