Instituto de Física, Pontificia Universidad Católica de Valparaiso (PUCV), 23-40025 Valparaíso, Chile.
Centro de Investigaciones Ópticas (CONICET La Plata - CIC), C.C. 3, 1897 Gonnet, Argentina.
Phys Rev E. 2017 Oct;96(4-1):042207. doi: 10.1103/PhysRevE.96.042207. Epub 2017 Oct 17.
We have experimentally quantified the temporal structural diversity from the coordinate fluctuations of a laser beam propagating through isotropic optical turbulence. The main focus here is on the characterization of the long-range correlations in the wandering of a thin Gaussian laser beam over a screen after propagating through a turbulent medium. To fulfill this goal, a laboratory-controlled experiment was conducted in which coordinate fluctuations of the laser beam were recorded at a sufficiently high sampling rate for a wide range of turbulent conditions. Horizontal and vertical displacements of the laser beam centroid were subsequently analyzed by implementing the symbolic technique based on ordinal patterns to estimate the well-known permutation entropy. We show that the permutation entropy estimations at multiple time scales evidence an interplay between different dynamical behaviors. More specifically, a crossover between two different scaling regimes is observed. We confirm a transition from an integrated stochastic process contaminated with electronic noise to a fractional Brownian motion with a Hurst exponent H=5/6 as the sampling time increases. Besides, we are able to quantify, from the estimated entropy, the amount of electronic noise as a function of the turbulence strength. We have also demonstrated that these experimental observations are in very good agreement with numerical simulations of noisy fractional Brownian motions with a well-defined crossover between two different scaling regimes.
我们通过实验量化了激光束在各向同性光湍流中传播时的坐标波动的时间结构多样性。这里的主要关注点是在激光束通过湍流介质后在屏幕上传播时,对薄高斯激光束的漂移的长程相关性进行特征描述。为了实现这一目标,进行了一个实验室控制实验,其中以足够高的采样率记录了激光束的坐标波动,以研究广泛的湍流条件。随后,通过实施基于有序模式的符号技术分析激光束质心的水平和垂直位移,以估计著名的排列熵。我们表明,在多个时间尺度上的排列熵估计表明存在不同动态行为之间的相互作用。更具体地说,观察到两个不同标度区域之间的交叉。随着采样时间的增加,我们确认从受电子噪声污染的积分随机过程到分数布朗运动(Hurst 指数 H=5/6)的转变。此外,我们能够从估计的熵中定量表示作为湍流强度函数的电子噪声量。我们还证明了这些实验观察结果与具有明确定义的两个不同标度区域之间交叉的噪声分数布朗运动的数值模拟非常吻合。