ROGUE WAVES IN SPATIALLY EXTENDED OPTICAL SYSTEMS

S. Residori, U. Bortolozzo, A. Montina, F. Lenzini, F. Arecchi
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引用次数: 11

Abstract

Giant anomalous events may occur in systems characterized by many waves, with extremely high amplitude waves appearing with a probability much higher than expected for a random dynamics. Such rare, and giant, events are known to occur on the ocean surface and have been named, in that context, "rogue waves". We present here some recent experimental results on the statistical properties of giant optical waves, or "optical rogue waves", observed in spatially extended optical systems. We will present the main statistical features of such extreme events, then, based on both a linear and a nonlinear experiment, we will outline a way enabling us to identify two key ingredients at the origin of optical rogue waves, namely, granularity, that is, a minimal size of the individual light spots, and inhomogeneity, that is, clustering of the light spots into separate domains with different average intensities. In the linear experiment we measure also the statistics of the waiting times between successive rogue waves and we show that it follows a log-Poisson distribution, which is characteristics of event separation observed in cooperative, complex systems and in such different fields as geophysics and biology.
空间扩展光学系统中的异常波
巨大的异常事件可能发生在以多波为特征的系统中,其中极高振幅的波出现的概率远远高于随机动力学的预期。众所周知,这种罕见而巨大的事件发生在海洋表面,在这种情况下,它被命名为“流氓波”。本文介绍了在空间扩展光学系统中观测到的巨光波或“光异常波”的统计特性的一些最新实验结果。我们将介绍这些极端事件的主要统计特征,然后,基于线性和非线性实验,我们将概述一种方法,使我们能够在光学异常波的起源处识别两个关键成分,即粒度,即单个光斑的最小尺寸,和非均匀性,即光斑聚类到具有不同平均强度的单独域。在线性实验中,我们还测量了连续异常波之间等待时间的统计数据,并表明它遵循对数泊松分布,这是在合作,复杂系统以及地球物理学和生物学等不同领域中观察到的事件分离的特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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