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Beam wander of focused electromagnetic multi-Gaussian Schell-model beams propagation in anisotropic turbulence

机译:各向异性湍流中聚焦电磁多高斯舒尔模型光束传播的光束

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摘要

Analytical expression of the cross-spectral density matrix of the focused electromagnetic MGSM beams propagation through in non-Kolmogorov anisotropic turbulent atmosphere is obtained. With the help of this formulation, the influences of non-Kolmogorov anisotropic turbulence and source parameters on beam spreading and beam wander of focused electromagnetic Multi-Gaussian Shell-model(MGSM)beams in the atmosphere are discussed. Increasing the anisotropic property of atmospheric turbulence could degrade both beam spreading and beam wander. The values of the turbulence structure parameter, inner scale and propagation distance had significant effects on the beam wander of focused electromagnetic MGSM beams, where a peak phenomenon of the beam wander existed as they increased. Electromagnetic MGSM beams with larger beam order, beam width, wavelength could better mitigate the turbulence effects than GSM beams, which could be adopted as a better light source with several adjustable parameters to lower scintillation and beam wander in free-space optical communication.
机译:获得了聚焦电磁MGSM光束传播在非Kolmogorov各向异性湍流气氛中的横光密度矩阵的分析表达。借助于这种制剂,讨论了非Kolmogorov各向异性湍流和源参数对大气中聚焦电磁多高声壳模型(MGSM)梁的光束扩散和光束漂移的影响。增加大气湍流的各向异性性能可能降低光束扩散和梁漂移。湍流结构参数的值,内规模和传输距离对聚焦电磁MGSM的光束漂移梁,显著效果,其中漂移存在,因为它们增加了光束的峰值的现象。电磁MGSM波束具有较大的光束顺序,光束宽度,波长可以更好地减轻比GSM光束的湍流效应,这可以是具有若干可调节参数的更好的光源,以降低自由空间光学通信中的闪烁和光束漂移。

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