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Modelling of laser beam propagation through the whirlwind

机译:通过旋风模拟激光束传播

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We modelled a whirlwind in the atmosphere with the aid of system of the linear and weakly nonlinear 3D system of the Navier-Stokes equations. We investigated Gaussian beam propagation through the modelled whirlwind in the atmosphere. Parabolic equation method has been applied for study of the intensity variations of the beam. We investigated the evolution of the whirlwind velocity field and laser beam propagation through it. The examples of the distorted laser beam are presented as the images in 2D plane. A new method was set forth to the compensation of random distortions. The method was applied for compensation of distortions of a laser beam propagating through the whirlwind in atmosphere. Results may be applied for the compensation distortions of images from modern optical telescopes, in targeting problem and even for control of laser beam focusing on object-target in the case of the random turbulent medium.
机译:借助Navier-Stokes方程的线性和弱非线性3D系统的系统,我们在大气中建模了旋风。我们通过大气中的模型旋风调查了高斯光束传播。抛物线方程方法已经应用于梁的强度变化研究。我们调查了旋风速度场的演变和激光束传播通过它。扭曲的激光束的示例作为2D平面中的图像呈现。对随机失真的补偿阐述了一种新方法。施加该方法以补偿通过大气中穿过旋风传播的激光束的扭曲。结果可以应用于现代光学望远镜的图像的补偿扭曲,瞄准问题,甚至用于控制随机湍流介质的情况下的对象靶的激光束控制。

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