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THE CARBON AEROSOL/ PARTICLES NUCLEATION WITH A LIDAR: NUMERICAL SIMULATIONS AND FIELD STUDIES.

机译:碳气溶胶/颗粒与潮羊里的核心:数值模拟和现场研究。

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In this contribution, we present the results of two recent papers [1,2] published in Optics Express, dedicated to the development of two new lidar methodologies. In [1], while the carbon aerosol (for example, soot particles) is recognized as a major uncertainty on climate and public health, we couple lidar remote sensing with Laser-Induced-Incandescence (LII) to allow retrieving the vertical profile of very low thermal radiation emitted by the carbon aerosol, in agreement with Planck's law, in an urban atmosphere over several hundred meters altitude. In paper [2], awarded as June 2014 OS A Spotlight, we identify the optical requirements ensuring an elastic lidar to be sensitive to new particles formation events (NPF-events) in the atmosphere, while, in the literature, all the ingredients initiating nucleation are still being unrevealed [3]. Both papers proceed with the same methodology by identifying the optical requirements from numerical simulation (Planck and Kirchhoff's laws in [1], Mie and T-matrix numerical codes in [2]), then presenting lidar field application case studies. We believe these new lidar methodologies may be useful for climate, geophysical, as well as fundamental purposes.
机译:在这一贡献中,我们展示了两篇论文的结果[1,2]在光学表达中发表,致力于开发两个新的激光雷达方法。在[1]中,虽然碳气溶胶(例如,烟灰粒子)被认为是气候和公共健康的主要不确定性,但我们将激光遥感与激光诱导的 - 白炽(LII)耦合,以允许检索非常的垂直轮廓碳气溶胶发出的低热辐射,与普朗克的法律一致,在城市气氛中,在几百米的高度。在纸质[2]中,授予2014年6月OS的聚光灯,我们识别光学要求,确保弹性激光雷达在大气中对新的颗粒形成事件(NPF-event)敏感,而在文献中,所有的成分启动成核仍未缺陷[3]。通过识别来自数值模拟的光学要求(Planck和Kirchhoff在[1]中的定律,[2]中的T-矩阵数值代码,然后呈现LIDAR现场应用案例研究,这两篇论文通过识别相同的方法。我们认为这些新的激光乐队方法可能对气候,地球物理以及基本目的有用。

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