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The transformation of an edge dislocation in atmospheric turbulence

机译:大气湍流中边缘位错的转变

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摘要

The explicit expression for the cross-spectral density of partially coherent elliptical Gaussian beams carrying an edge dislocation propagating through atmospheric turbulence along a slant path is derived, and used to study the transformation of the edge dislocation in atmospheric turbulence. We find that the edge dislocation disappears and transforms to a noncanonical coherence vortex, when partially coherent elliptical Gaussian beams with edge dislocation propagate through atmospheric turbulence. The inversion of the topological charge of the coherence vortex may take place. The ellipticity of the beam and slope of the edge dislocation play a dominant role in the evolution of the coherence vortex. In the coherent limit the coherence vortex in turbulence becomes an intensity vortex, however, differing from the case in free-space propagation, the position of the intensity vortex depends on the choice of the reference point. The results are illustrated analytically and numerically.
机译:推导了部分相干椭圆高斯光束沿边沿路径通过大气湍流传播时其边缘错位传播的谱密度的显式表达式,并用于研究边缘错位在大气湍流中的转变。我们发现,当具有边缘错位的部分相干椭圆高斯光束通过大气湍流传播时,边缘错位消失并转变为非规范相干涡。相干涡旋的拓扑电荷可能发生反转。束的椭圆率和边缘位错的斜率在相干涡的演变中起主要作用。在相干极限中,湍流中的相干涡成为强度涡,但是,与自由空间传播的情况不同,强度涡的位置取决于参考点的选择。结果通过分析和数字方式说明。

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