论文标题
部分可观测时空混沌系统的无模型预测
Turbulence-resistant self-focusing vortex beams
论文作者
论文摘要
我们考虑最近引入了携带轨道角动量(OAM)的自我关注场[Opt。 Lett。 $ \ textbf {46} $,2384 $ - $ 2387(2021)],尤其是它们通过动荡的海洋传播属性。我们表明,与完全连贯的光束相比,这种类型的场尤其强大地抵抗湍流引起的降解。在中等强烈的海洋湍流中,自我关注的OAM梁在接收机平面处具有五个数量级的峰值强度,$ \ sim $ 80 $ \%$ \%$ \%$检测概率以及超过70 $ \%$ \%$ \%的能量传输效率,超过$ \%$ \ sim \ sim \ fly。违反直觉,随着湍流的增加,此类磁场的聚焦特性可能会增强,从而导致平均平方腰部较小,而湍流强度更大。我们的结果表明,某些类型的部分相干性对于使用OAM的光学电信可能是非常可取的。
We consider recently introduced self-focusing fields that carry orbital angular momentum (OAM) [Opt. Lett. $\textbf{46}$, 2384$-$2387 (2021)] and in particular, their propagation properties through a turbulent ocean. We show that this type of field is especially robust against turbulence induced degradation, when compared to a completely coherent beam. In moderately strong oceanic turbulence, the self-focusing OAM beam features over five orders of magnitude higher peak intensities at the receiver plane, an $\sim$80 $\%$ detection probability for the signal mode, as well as an energy transmission efficiency in excess of 70 $\%$ over a link of $\sim$100 m. Counter-intuitively, the focusing properties of such fields may be enhanced with increasing turbulence, causing the mean squared waist to become smaller with greater turbulence strength. Our results demonstrate that certain types of partial coherence may be highly desirable for optical telecommunication employing OAM.