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Statistics of pulsed Laguerre-Gaussian beams in a turbulent atmosphere

机译:湍流大气中脉冲拉格勒 - 高斯梁的统计

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Based on the numerical solution of the parabolic wave equation for the complex spectral amplitude of the wave field by using the splitting into physical factors method the fluctuations of energy density of the broadband pulsed optical radiation for various modes of the Laguerre-Gaussian beam under different turbulent conditions on the propagation path were studied. It has been shown that with the increase of optical turbulence the relative variance of energy density fluctuations of pulsed radiation of femtosecond duration becomes much lower than that of continuous-wave (cw) radiation and, in contrast, may become smaller than unity. Provided the pulse duration is short the energy density fluctuations tend to decrease as the order of the Laguerre-Gaussian beam mode rises. The level of residual spatial correlation of the strong energy density fluctuations of pulsed radiation exceeds the level of cw intensity correlation in all examined Laguerre-Gaussian beam modes and the typical two-scale structure of spatial correlation for the strong fluctuations of cw radiation in the case of pulsed radiation is less expressed.
机译:基于抛物面波动方程的数值解,使用分裂成物理因素方法方法方法不同湍流下Laguerre-高斯光束各种模式的宽带脉冲光学辐射能量密度的波动研究了繁殖路径的条件。已经表明,随着光学湍流的增加,飞秒持续时间的脉冲辐射的能量密度波动的相对方差远低于连续波(CW)辐射的相对方差,并且相反,可能变得小于Unity。如果脉冲持续时间短,则随着LAGUERRE-GASSIAN波束模式升高的顺序,能量密度波动趋于减小。脉冲辐射的强能量密度波动的残余空间相关水平超过了所有检查的Laguerre-高斯光束模式中CW强度相关的水平,以及壳体中CW辐射强烈波动的空间相关性的典型双级结构脉冲辐射的表达较少。

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