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Evolution of linear edge dislocation in atmospheric turbulence and free space

机译:大气湍流中线性边缘位错的演变与自由空间

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摘要

In accordance with the extended Huygens-Fresnel principle, the evolution of linear edge dislocation propagating through atmospheric turbulence is studied, and the effects of waist width and the slope of linear edge dislocation are investigated. It is shown that when linear edge dislocation beams propagate through atmospheric turbulence, if the waist width is not equal and the slope is not zero, then the linear edge dislocation vanishes and transforms into an optical vortex with a topological charge of -1 or +1. The optical vortex and an optical vortex that is created annihilate when the transmission distance is far enough. The linear edge dislocation vanishes when the slope is zero. If the waist width is equal, then the linear edge dislocation will vanish regardless of the slope value. For linear edge dislocation beams in free space, when selecting specific parameters, linear edge dislocation always exists.
机译:根据延伸的Huygens-Fresnel原理,研究了通过大气湍流传播的线性边缘位错的演变,并研究了腰宽和线性边缘位错斜率的影响。 结果表明,当线性边缘位错波束通过大气湍流传播时,如果腰部宽度不等于并且斜率不为零,则线性边缘位错消失并转换成具有-1或+1的拓扑电荷的光学涡流 。 当传输距离足够远时,光学涡流和产生的光学涡旋湮灭。 当斜率为零时,线性边缘位错消失。 如果腰部宽度相等,则无论斜率值如何,线性边缘位错将消失。 对于自由空间中的线性边缘位错波束,在选择特定参数时,始终存在线性边缘位错。

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