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Scanning polarization lidar LOSA-M3: opportunity for research of crystalline particle orientation in the ice clouds

机译:扫描极化LIDAR LOSA-M3:在冰云中研究晶体粒子取向的机会

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The article describes a scanning polarization lidar, LOSA-M3, developed at the V.?E.?Zuev Institute of Atmospheric Optics, the Siberian Branch of the Russian Academy of Sciences (IAO SB RAS), as part of the common use center “Atmosphere”. The first results of studying the crystalline particle orientation by means of this lidar are presented herein. The main features of the LOSA-M3 lidar are the following: (1)?an automatic scanning device, which allows changing the sensing direction in the upper hemisphere at the speed up to 1.5°s?1 with the accuracy of the angle measurement setting of at least 1arcmin, (2)?separation of the polarization components of the received radiation that is carried out directly behind the receiving telescope without installing the elements distorting polarization, such as dichroic mirrors and beam splitters, and (3)?continuous alternation of the initial polarization state (linear–circular) from pulse to pulse that makes it possible to evaluate some elements of the scattering matrix. For testing lidar performance several series of measurements of the ice cloud structure in the zenith scan mode were carried out in Tomsk in April–June 2018. The results show that the degree of horizontal orientation of particles can vary significantly in different parts of the cloud. The dependence of signal intensity on the tilt angle reflects the distribution of particle deflection relative to the horizontal plane and is well described by the exponential dependence. The values of the cross-polarized component in most cases show a weak decline of intensity with the angle. However, these variations are smaller than the measurement errors. We can conclude that they are practically independent of the tilt angle. In most cases the scattering intensity at the wavelength of 532nm has a wider distribution than at 1064nm.
机译:本文介绍了扫描偏振LIDAR,LOSA-M3,在俄罗斯科学院的西伯利亚分支机构(IAO SB RAS),作为常见用途中心的一部分“大气层”。本文介绍了通过该潮雷达研究结晶颗粒取向的第一个结果。 LOSA-M3 LIDAR的主要特点如下:(1)?一种自动扫描装置,允许在高达1.5°S的速度下将传感方向改变为1.5°S的速度,以角度测量设置的准确性至少1ARCMIN,(2)?分离接收的辐射的偏振分量,该辐射直接在接收望远镜后面进行,而无需安装扭曲偏振的元件,例如二向色反射镜和分支分离器,并且(3)?连续交替从脉冲到脉冲的初始偏振状态(线性圆形)使得可以评估散射矩阵的一些元素。为了测试LIDAR性能,在2018年4月在Tomsk进行了Zenith扫描模式中的冰云结构的几次测量。结果表明,颗粒的水平取向程度在云的不同部分中可以显着变化。信号强度对倾斜角的依赖性反映了相对于水平平面的粒子偏转的分布,并且通过指数依赖性描述了很好的描述。在大多数情况下,交叉极化组分的值显示出强度的弱点与角度。然而,这些变化小于测量误差。我们可以得出结论,它们实际上与倾斜角度无关。在大多数情况下,波长532nm的散射强度具有比1064nm更宽的分布。

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