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Propagation properties of radial partially coherent flat-topped array beams in a turbulent atmosphere

机译:径向局部相干平顶阵列光束在湍流环境中的传播特性

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摘要

With the help of the tensor method, the analytical expression for the cross-spectral density of the radial partially coherent flat-topped array (RPCFTA) beams propagating in a turbulent atmosphere is derived, where the correlated superposition and uncorrelated superposition are considered. The average intensity, the spatial coherence properties and power in bucket (PIB) of these kinds of beams are investigated in detail. It is shown by numerical results and analysis that the average intensity and the spatial coherence of the correlated or uncorrelated RPCFTA beams will change on propagation and this change is dependent upon the correlation of the source's beamlets and atmospheric turbulence. In addition, the comparisons of the average intensity and the spatial coherence between the correlated and the uncorrelated RPCFTA beams propagating both in turbulent atmosphere and in free space are also given, and some interesting results are obtained. The laser power of focus ability of the single PCFT beam is worse than that of the correlated RPCFTA beam and but better than that of the uncorrelated RPCFTA beam when propagation distance in turbulent atmosphere is far-field plane.
机译:借助张量法,推导了在湍流中传播的径向部分相干平顶阵列(RPCFTA)光束的跨谱密度的解析表达式,其中考虑了相关叠加和不相关叠加。详细研究了这类光束的平均强度,空间相干性和桶内功率(PIB)。数值结果和分析表明,相关或不相关的RPCFTA光束的平均强度和空间相干性将随着传播而变化,而这种变化取决于光源的子束和大气湍流的相关性。此外,还给出了在湍流大气和自由空间中传播的相关和不相关的RPCFTA光束的平均强度和空间相干性的比较,并获得了一些有趣的结果。当湍流大气中的传播距离为远场平面时,单个PCFT光束的聚焦能力激光功率比相关RPCFTA光束差,但比不相关的RPCFTA光束强。

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