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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Intensity fluctuations of reflected wave from distributed particles illuminated by a laser beam in atmospheric turbulence
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Intensity fluctuations of reflected wave from distributed particles illuminated by a laser beam in atmospheric turbulence

机译:激光束在大气湍流中由激光束照射的分布式粒子的反射波的强度波动

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摘要

The intensity fluctuation of the reflected field from a group of discrete particles illuminated by a laser beam in turbulent atmosphere is investigated here. First, the expression of the correlation function of the received intensity is derived by dividing the illuminated space into a number of sub blocks. Then, the log-amplitude covariance function of the reflected waves from two particles at different heights in a turbulent atmosphere is deduced using the Rytov method. The dimensions of the sub blocks are discussed based on the 3D log-amplitude covariance function, and the normalized variance of the received intensity is calculated and discussed based on the sub blocks. Results show that the normalized variance is mainly affected by the cross section area of the illuminated space, whereas the latter is greatly influenced by the position of the received point and the width of the transmitting beam. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这里研究了来自激光束照射的一组离散粒子的反射场的强度波动。 首先,通过将照明空间划分为多个子块来导出接收强度的相关函数的表达。 然后,使用RyTov方法推导出来自湍流气氛中不同高度的两个颗粒的反射波的对数幅度协方差。 基于3D记录幅度协方差函数讨论子块的尺寸,并且基于子块计算并讨论接收强度的归一化方差。 结果表明,归一化方差主要受照明空间的横截面区域的影响,而后者受到接收点的位置和透射光束的宽度的大大影响。 (c)2018年elestvier有限公司保留所有权利。

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