首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Theoretical prediction and experimental validation of the angle-of-arrival probability density of a laser beam in a strong plane-flame turbulence
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Theoretical prediction and experimental validation of the angle-of-arrival probability density of a laser beam in a strong plane-flame turbulence

机译:强平面火焰湍流中激光束到达角概率密度的理论预测和实验验证

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摘要

The propagation of a laser beam through a plane turbulent flame is studied using geometrical optics approximation. The random fluctuations of the refractive index caused by a strong thermal turbulence in the flame create random perturbations of the laser beam direction. From the Markovian process model applied along the whole random path of the beam, the theoretical probability density of the laser beam angle-of-arrival is derived from the analytical solution of the Einstein-Fokker-Kolmogorov equation, which we have determined in terms of a series expansion of spherical harmonics. An experimental setup and a method for measuring this probability density are described. The experimental results obtained are shown to agree with the theoretical predictions.
机译:使用几何光学近似研究了激光束在平面湍流火焰中的传播。由火焰中强烈的热湍流引起的折射率的随机波动会产生激光束方向的随机扰动。从沿光束整个随机路径应用的马尔可夫过程模型,激光束到达角的理论概率密度来自爱因斯坦-福克尔-科莫格罗夫方程的解析解,我们根据以下公式确定:球谐函数的一系列展开。描述了一种用于测量该概率密度的实验装置和方法。实验结果表明与理论预测吻合。

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