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Experimental verification of the turbulent effects on laser beam propagation in space

机译:湍流对激光束在空间中传播的影响的实验验证

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In this work, we have modified an existing experimental setup to fully classify the thermal effects on a laser beam propagating in air. Improvements made to the setup include a new, more powerful laser, a precision designed turbulence delivery system, an imbedded pressure sensor, and a platform for height adjustability between the laser beam and the turbulence model. The setup was not only able to reproduce previous results exactly but also allowed new data for the turbulence strength C-n(2), the Rytov variance (scintillation) and the coherence diameter (Fried's parameter) to be successfully measured. Analysis of the produced interferograms has been discussed using fast Fourier transforms. The results confirm, within the Kolmogorov regime, that phase and intensity fluctuations increase relative to temperature. The turbulent region exhibited very strong disturbances, in the range of 1.1 x 10(-12) m(-2/3) to 2.7 x 10(-12) m(-2/3). In spite of the strong turbulence strength, scintillation proved otherwise, since the condition for a weak turbulence environment was determined in the laboratory and a low scintillation index was to be expected. This is as a result of the relatively short propagation distances achieved in the laboratory. In the open atmosphere, path lengths extend over vast distances and in order for turbulent effects to be realized, the turbulence model must generate stronger turbulence. The model was, therefore, able to demonstrate its ability to fully quantify and determine the thermal turbulence effects on a propagating laser beam.
机译:在这项工作中,我们已经修改了现有的实验装置,以对在空气中传播的激光束的热效应进行完全分类。对设置进行的改进包括新的,功能更强大的激光器,精确设计的湍流输送系统,嵌入式压力传感器以及用于在激光束和湍流模型之间进行高度可调的平台。该设置不仅能够准确地再现以前的结果,而且还允许成功测量湍流强度C-n(2),Rytov方差(闪烁)和相干直径(Fried参数)的新数据。已经使用快速傅立叶变换讨论了产生的干涉图的分析。结果证实,在Kolmogorov体制内,相位和强度波动相对于温度增加。湍流区域表现出非常强的扰动,范围为1.1 x 10(-12)m(-2/3)到2.7 x 10(-12)m(-2/3)。尽管湍流强度很强,但还是证明了闪烁,因为在实验室中确定了湍流环境较弱的条件,并且闪烁指数较低。这是由于在实验室中实现了相对较短的传播距离的结果。在开放的大气中,路径长度在很长的距离上延伸,为了实现湍流效果,湍流模型必须产生更强的湍流。因此,该模型能够证明其完全量化和确定热流对传播的激光束影响的能力。

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