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Optical and physical properties of stratospheric aerosols from balloon measurements in the visible and near-infrared domains. II. Comparison of extinction, reflectance, polarization, and counting measurements

机译:平流层气溶胶的光学和物理特性,来自气球在可见光和近红外域中的测量结果。二。消光,反射率,偏振和计数测量值的比较

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The physical properties of stratospheric aerosols can be retrieved from optical measurements involving extinction, radiance, polarization, and counting. We present here the results of measurements from the balloonborne instruments AMON, SALOMON, and RADIBAL, and from the French Laboratoire de Meteorologie Dynamique and the University of Wyoming balloonborne particle counters. A cross comparison of the measurements was made for observations of background aerosols conducted during the polar winters of February 1997 and January-February 2000 for various altitudes from 13 to 19 km. On the one hand, the effective radius and the total amount of background aerosols derived from the various sets of data are similar and are in agreement with pre-Pinatubo values. On the other hand, strong discrepancies occur in the shapes of the bimodal size distributions obtained from analysis of the raw measurements of the various instruments. It seems then that the log-normal assumption cannot fully reproduce the size distribution of background aerosols. The effect of the presence of particular aerosols on the measurements is discussed, and a new strategy for observations is proposed.
机译:平流层气溶胶的物理特性可以从涉及消光,辐射,极化和计数的光学测量中获得。在这里,我们介绍了气球式仪器AMON,SALOMON和RADIBAL以及法国气象实验室动力实验室和怀俄明大学的气球式粒子计数器的测量结果。对测量值进行了交叉比较,以观察在1997年2月和2000年1月至2月的极冬期间在13至19 km的不同高度进行的背景气溶胶。一方面,有效半径和从各种数据集得出的背景气溶胶总量相似,并且与皮纳图博前的值一致。另一方面,通过分析各种仪器的原始测量值获得的双峰尺寸分布的形状存在很大差异。这样看来,对数正态假设不能完全再现背景气溶胶的尺寸分布。讨论了特定气溶胶的存在对测量的影响,并提出了一种新的观测策略。

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