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基于几何分析,将离轴激光雷达在近距离范围内望远镜视场与发射激光分布的交叠区分为三种形状,并给出了计算离轴激光雷达重叠因子的解析计算公式.基于该公式和发射激光的高斯分布得到了本实验室Mie散射激光雷达重叠因子随高度的变化曲线.利用该曲线对成都地区在不同天气状况下的雷达回波信号进行了校正.在此基础上,利用Klett算法对校正后的回波信号进行了反演,得到了532 nm波长大气消光系数随高度的变化曲线.结果表明,基于文中校正方法得到的大气消光系数能反映实际的天气情况.
关键词:
离轴雷达
重叠因子
高斯模式 相似文献
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发现不同波长激光激发下C6H12的受激拉曼散射模式竞争现象. 在不同波长的激光激发下,不同拉曼模式的Stokes光占优势. 短波长(404,532 nm)激光激发时小频移模式ω1(802 cm-1)为弱增益模式,大频移模式ω2(2852-3038 cm-1)为强增益模, 主要产生ω2模式的Stokes光. 长波长(808 nm)激光激发时,小频移模式ω1为强增益模式,大频移模式ω2为弱增益模式,有利于ω1模式Stokes光输出. 在普通激光拉曼光谱实验中观察到类似现象. 讨论了这一现象的产生机理及应用前景. 相似文献
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High-sensitive automatic transient laser-induced breakdown spectroscopy system with high temporal and spatial resolution 下载免费PDF全文
A high-sensitive automatic transient laser-induced breakdown spectroscopy (LIBS) system is designed and integrated. It successfully avoids the delay time selecting problem in conventional LIBS system, and realizes the LIBS data acquisition with high spatiotemporal resolution automatically. Multiple transient spectra can be obtained in each measurement, which will provide more information for spectral research. The water-vapour and liquid-water Raman scattering spectra are captured by this system, and the comparison of experimental water-vapour Raman scattering spectrum with theoretical data verifies the reliability of the LIBS system. Based on this system, the air laser induced air breakdown spectra are captured and analysed. The system is also useful for the research on water-vapour Raman Lidar remote sensing. 相似文献
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报道荧光染料DCM对丙酮SRS的高效放大, 研究了DCM中Stokes波的增益特性. 改变DCM乙醇溶 液浓度,变化进入DCM的Stokes光强度以及抽运激光功率,测量并分析了Stokes波增益与上 述条件的关系. 研究结果发现,当DCM浓度为 2×10-4mol/L时,Stokes波 获得最大功 率增益达到57;抽运激光功率增加或进入DCM的Stokes信号增强时Stokes波输出增强,但 过强的Stokes 信号将导致增益饱和.
关键词:
受激拉曼散射
荧光增强Stokes波
丙酮
DCM 相似文献
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推导出截断圆对称光束二阶矩的传输方程,它们与无截断光束的二阶矩满足相似的传输定律.因此,基于广义截断二阶矩方法,将直角坐标系中截断二维光束的二阶矩特征参数推广到柱坐标系中的截断圆对称光束,类似方法定义的广义M2因子(M2G因子)是一个传输不变量.对理论的自洽性作了物理解释.推导出柱坐标系中截断超高斯光束的二阶矩参数和M2G因子.对一些有意义的特殊情况作了讨论,并以数值计算例作了说明.
关键词:
光束描述
截断光束
圆对称性
广义截断二阶矩(GTSM)
2因子(M2G因子)')" href="#">广义M2因子(M2G因子) 相似文献
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We report the first-order Stokes output (wavelength of 627.6 nm) from C6H12 enhanced by DCM dye fluorescence with high energy conversion efficiency of 47.9%, quantum conversion efficiency of 56.5%. To our knowledge, it is the highest conversion efficiency of stimulated Raman scattering obtained from liquid Raman laser. A 532nm frequency doubled Nd:YAG laser with 8 Hz repetition rate is employed as the pump source, and the enhancement medium is DCM dye solution in ethanol. The conversion efficiencies at various pump energies and various pump repetition rates are measured and analysed. The enhancement mechanism of SRS together with its potential application is discussed. 相似文献
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