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A transport model for broadening of a linearly polarized, coherent beam due to inhomogeneities in a turbulent atmosphere

机译:用于在湍流气氛中扩大线性极化,相干光束的传输模型

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Traditional models for beam broadening include both a diffractive term, owing to the source aperture, and a beam 'wandering' term that stems from refractive index variations in the atmosphere. Here we derive a novel beam broadening term that depends on the properties of atmospheric turbulence. The derivation rests on a transport formulation of the propagation problem whereby the magnitude of the electric field is viewed as the density of a fluid, moving in a flow that is driven by the refractive index perturbations. Properties of the transport solutions are obtained using Lagrangian coordinates and are demonstrated to be entirely consistent with existing theory on the subject. The new factor predicts appreciable (25% in our example) increases in beam broadening for applications requiring propagation over very long optical paths and heavy turbulence.
机译:由于源孔径,传统的光束扩大模型包括衍射术语,并且是源孔的偏差术语,以及源于大气中的折射率变化的梁“徘徊”术语。 在这里,我们得出了一种新颖的梁展现术语,取决于大气湍流的性质。 衍生基于传播问题的传输制剂,从而将电场的大小视为流体的密度,以折射率扰动驱动的流动。 使用拉格朗日坐标获得运输解决方案的性质,并证明与对象的现有理论完全一致。 新因素预测,在需要在非常长的光路上和重型湍流中传播的应用的光束扩大的光束扩大的增加增加。

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