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Scintillation index for N Gaussian laser beams with different wavelengths in weak atmospheric turbulence

机译:N高斯激光束的闪烁指数在弱大气湍流中不同波长

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We study the scintillation index of N partially overlapping lowest order Gaussian laser beams with different wavelengths in weak atmospheric turbulence. Assuming a Von Karman turbulence spectrum and slow detector response and using the Rytov approximation we calculate the longitudinal and radial components of the scintillation index for typical free-space laser communication setups. We find the initial beam separation that minimizes the longitudinal scintillation and corresponds to the optimal beam configuration. Further reduction of the longitudinal scintillation is obtained by optimizing with respect to both initial beam separation and initial spot size. The longitudinal scintillation of the optimal N-beam configurations is inversely proportional to N, resulting in a 92% reduction for a 9-beam system compared with the single beam value. The existence of the minimum of longitudinal scintillation is not very sensitive to the form of the turbulence spectrum. Moreover, the radial scintillation values for the optimal N-beam configurations are found to be significantly smaller than the corresponding single beam values, and this reduction effect also grows with increasing N.
机译:我们研究了N部分重叠的最低阶高斯激光束的闪烁指数,其具有不同波长的弱大气湍流。假设von Karman湍流频谱和慢速检测器响应并使用Rytov近似,我们计算典型的自由空间激光通信设置的闪烁指数的纵向和径向分量。我们发现初始光束分离,最小化纵向闪烁,并对应于最佳光束配置。通过相对于初始光束分离和初始光斑尺寸优化,获得纵向闪烁的进一步减少。最佳N光束配置的纵向闪烁与N成反比,导致9梁系统的减少92%,与单梁值相比。纵向闪烁的最小值对湍流光谱的形式不太敏感。此外,发现最佳N光束配置的径向闪烁值明显小于相应的单光束值,并且这种降低效果也随着N的增加而增长。

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