Dipartimento di Fisica, Università di Firenze, Via Sansone 1, 50019 Sesto Fiorentino, Firenze, Italy.
Phys Rev Lett. 2011 Apr 15;106(15):153901. doi: 10.1103/PhysRevLett.106.153901.
In the presence of many waves, giant events can occur with a probability higher than expected for random dynamics. By studying linear light propagation in a glass fiber, we show that optical rogue waves originate from two key ingredients: granularity, or a minimal size of the light speckles at the fiber exit, and inhomogeneity, that is, speckles clustering into separate domains with different average intensities. These two features characterize also rogue waves in nonlinear systems; thus, nonlinearity just plays the role of bringing forth the two ingredients of granularity and inhomogeneity.
在存在许多波的情况下,巨事件可能会以高于随机动力学预期的概率发生。通过研究玻璃光纤中的线性光传播,我们表明光学不规则波源于两个关键因素:颗粒性,或光纤出口处光斑点的最小尺寸,以及非均匀性,即斑点聚集成具有不同平均强度的单独区域。这两个特征也描述了非线性系统中的不规则波;因此,非线性只是起到了产生颗粒性和非均匀性这两个因素的作用。