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Ever-growing disturbances leading to freak waves

机译:不断增长的骚动导致巨浪

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Physicists like to study unusual kinds of waves, like freak waves found in the sea. Such wave movements can be studied using models designed to describe the dynamics of disturbances. The authors have focused on finding ways of best explaining how wave disturbance occurs under very specific initial conditions that are key to the genesis of these disturbances.They looked for solutions to this puzzle by resolving a type of equation, called the nonlinear Schroedinger equation. It is solved by applying a method designed for studying instabilities tailored to these initial conditions. Their approach makes it possible to locate exactly where and how pertinent information used to identify disturbance patterns can be extracted from localised disturbances' characteristics. The findings have been published recently. They therefore contribute to a better understanding of the complex dynamics of systems subjected to such disturbances. For example, they could be used to better understand waves appearing on fluid surfaces, whose evolution is influenced by gravity, or light waves propagated in optical fibres.
机译:物理学家喜欢研究不寻常的波浪,例如在大海中发现的怪异波浪。可以使用旨在描述扰动动力学的模型来研究此类波动。作者一直致力于寻找最佳方法来解释在非常特定的初始条件下波浪扰动是如何发生的关键因素,这些条件是造成这些扰动的关键,他们通过解决一种称为非线性Schroedinger方程的方程式来寻找解决方案。通过应用为研究适合于这些初始条件的不稳定性而设计的方法来解决该问题。他们的方法使得可以精确定位何处以及如何从局部干扰特征中提取用于识别干扰模式的相关信息。研究结果已于最近发表。因此,它们有助于更好地理解遭受此类干扰的系统的复杂动力学。例如,它们可以用来更好地理解流体表面上出现的波(其演化受重力影响)或光波在光纤中传播。

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