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Differential absorption Lidar measurements of H_2O and O_2 using a coherent white light continuum

机译:使用相干白光连续谱对H_2O和O_2的差分吸收激光雷达测量

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We applied a broadband and coherent white light continuum to differential absorption lidar (DIAL) detection of H_2O and O_2 profiles in the troposphere. The white light continuum can be generated by focusing high intensity femtosecond laser pulses at 800 run into a Kr gas cell covering a broad spectral range from UV to mid-IR. Thus, the use of white light continuum potentially enables the DIAL measurement of several greenhouse and/or pollutant gases simultaneously while minimizing the lead time for developing a tunable light source. In order to demonstrate such capability, here we report the lidar measurements of H_2O and O_2. These molecular species exhibit absorption lines in the near IR region where relatively high intensity of the white light continuum is available. The white light continuum was transmitted through the atmosphere collinearly to the axis of a receiver telescope. Backscattered light was passed through bandpass filters (H_2O On: 725 and 730 nm, H_2O Off: 750 ran, O_2 On: 760 nm, O_2 Off: 780 nm), and was detected by a photomultiplier tube. The detection wavelengths were selected consecutively by rotating the filter wheels that contain five bandpass filters with an interval of 1 minute. In addition, we propose a method for retrieving vertical profiles of H_O by considering wavelength dependence of the aerosol extinction coefficient a and backscatter coefficient ss. These results show that for achieving precise retrieval of H_2O distribution, one needs to reduce the effect of aerosol temporal variations by means of long-time accumulation or simultaneous detection of the On- and Off-wavelength signals.
机译:我们将宽带和相干白光连续体应用于对流层中H_2O和O_2轮廓的差分吸收激光雷达(DIAL)检测。白光连续体可以通过将高强度飞秒激光脉冲在800处聚焦到Kr气室中生成,该气室覆盖从UV到中红外的宽光谱范围。因此,使用白光连续体可能会同时对几种温室气体和/或污染物气体进行DIAL测量,同时将开发可调光源的前置时间最小化。为了证明这种能力,在这里我们报告H_2O和O_2的激光雷达测量。这些分子种类在近红外区域显示吸收线,在该区域可以使用相对较高强度的白光连续体。白光连续体通过大气共线传输到接收望远镜的轴上。反向散射的光通过带通滤光片(H_2O开:725和730 nm,H_2O关:750 nm,O_2开:760 nm,O_2关:780 nm),并由光电倍增管检测。通过旋转包含五个带通滤光片的滤光轮以1分钟的间隔连续选择检测波长。此外,我们提出了一种通过考虑气溶胶消光系数a和反向散射系数ss的波长依赖性来检索H_O垂直剖面的方法。这些结果表明,为了实现H_2O分布的精确恢复,需要通过长时间积累或同时检测开和关波长信号来减少气溶胶时间变化的影响。

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